data_wwPDB_remediated_restraints_file_for_PDB_entry_2ksj # This wwPDB archive file contains, for PDB entry 2ksj: # # - Sequence information from the PDB mmCIF file # - NMR restraints from the PDB MR file # # In this file, the NMR restraints share the same atom names as in the coordinate # file, and in this way can differ from the data deposited at the wwPDB. To achieve # this aim, the NMR restraints were parsed from their original format files, and # the coordinates and NMR restraints information were subsequently harmonized. # # Due to the complexity of this harmonization process, minor modifications could # have occurred to the NMR restraints information, or data could have been lost # because of parsing or conversion errors. The PDB file remains the # authoritative reference for the atomic coordinates and the originally deposited # restraints files remain the primary reference for these data. # # This file is generated as part of the wwPDB at the BioMagResBank (BMRB) in # collaboration with the PDBe (formerly MSD) group at the European # Bioinformatics Institute (EBI) and the CMBI/IMM group at the Radboud # University of Nijmegen. # # Several software packages were used to produce this file: # # - Wattos (BMRB and CMBI/IMM). # - FormatConverter and NMRStarExport (PDBe). # - CCPN framework (http://www.ccpn.ac.uk/). # # More information about this process can be found in the references below. # Please cite the original reference for this PDB entry. # # JF Doreleijers, A Nederveen, W Vranken, J Lin, AM Bonvin, R Kaptein, JL # Markley, and EL Ulrich (2005). BioMagResBank databases DOCR and FRED # containing converted and filtered sets of experimental NMR restraints and # coordinates from over 500 protein PDB structures. J. Biomol. NMR 32, 1-12. # # WF Vranken, W Boucher, TJ Stevens, RH Fogh, A Pajon, M Llinas, EL Ulrich, JL # Markley, J Ionides, ED Laue (2005). The CCPN data model for NMR spectroscopy: # development of a software pipeline. Proteins 59, 687-696. # # JF Doreleijers, WF Vranken, C Schulte, J Lin, JR Wedell, CJ Penkett, GW Vuister, # G Vriend, JL Markley, and EL Ulrich (2009). The NMR Restraints Grid at BMRB for # 5,266 Protein and Nucleic Acid PDB Entries. J Biomol. NMR 45, 389-396. ####################### # Entry information # ####################### save_entry_information _Entry.Sf_category entry_information _Entry.Sf_framecode entry_information _Entry.ID rr_2ksj _Entry.Title 'wwPDB remediated NMR restraints for PDB entry 2ksj' _Entry.Version_type original _Entry.NMR_STAR_version 3.1.0.8 _Entry.Experimental_method NMR _Entry.Experimental_method_subtype solution _Entry.Details 'Contains the remediated restraint lists and coordinates for PDB entry 2ksj' _Entry.PDB_coordinate_file_version 3.20 loop_ _Related_entries.Database_name _Related_entries.Database_accession_code _Related_entries.Relationship _Related_entries.Entry_ID PDB 2ksj 'Master copy' rr_2ksj stop_ save_ ############################################# # Molecular system (assembly) description # ############################################# save_assembly _Assembly.Sf_category assembly _Assembly.Sf_framecode assembly _Assembly.Entry_ID rr_2ksj _Assembly.ID 1 _Assembly.Name 2ksj _Assembly.Number_of_components 1 _Assembly.Organic_ligands 0 _Assembly.Metal_ions 0 _Assembly.Non_standard_bonds no _Assembly.Paramagnetic no _Assembly.Thiol_state 'not present' _Assembly.Molecular_mass 4608.3953 loop_ _Entity_assembly.ID _Entity_assembly.Entity_assembly_name _Entity_assembly.Entity_ID _Entity_assembly.Entity_label _Entity_assembly.Asym_ID _Entity_assembly.PDB_chain_ID _Entity_assembly.Experimental_data_reported _Entity_assembly.Physical_state _Entity_assembly.Conformational_isomer _Entity_assembly.Chemical_exchange_state _Entity_assembly.Magnetic_equivalence_group_code _Entity_assembly.Role _Entity_assembly.Details _Entity_assembly.Entry_ID _Entity_assembly.Assembly_ID 1 'Capsid protein G8P' 1 $Capsid_protein_G8P A . no . . . . . . rr_2ksj 1 stop_ save_ #################################### # Biological polymers and ligands # #################################### save_Capsid_protein_G8P _Entity.Sf_category entity _Entity.Sf_framecode Capsid_protein_G8P _Entity.Entry_ID rr_2ksj _Entity.ID 1 _Entity.Name Capsid_protein_G8P _Entity.Type polymer _Entity.Polymer_type polypeptide(L) _Entity.Polymer_strand_ID A _Entity.Polymer_seq_one_letter_code ; GVIDTSAVESAITDGQGDMK AIGGYIVGALVILAVAGLIY SMLRKA ; _Entity.Ambiguous_conformational_states no _Entity.Ambiguous_chem_comp_sites no _Entity.Nstd_monomer no _Entity.Nstd_chirality no _Entity.Nstd_linkage no _Entity.Number_of_monomers 46 _Entity.Paramagnetic no _Entity.Thiol_state 'not present' _Entity.Parent_entity_ID 1 _Entity.Formula_weight 4608.3953 loop_ _Entity_comp_index.ID _Entity_comp_index.Auth_seq_ID _Entity_comp_index.Comp_ID _Entity_comp_index.Comp_label _Entity_comp_index.Entry_ID _Entity_comp_index.Entity_ID 1 . GLY . rr_2ksj 1 2 . VAL . rr_2ksj 1 3 . ILE . rr_2ksj 1 4 . ASP . rr_2ksj 1 5 . THR . rr_2ksj 1 6 . SER . rr_2ksj 1 7 . ALA . rr_2ksj 1 8 . VAL . rr_2ksj 1 9 . GLU . rr_2ksj 1 10 . SER . rr_2ksj 1 11 . ALA . rr_2ksj 1 12 . ILE . rr_2ksj 1 13 . THR . rr_2ksj 1 14 . ASP . rr_2ksj 1 15 . GLY . rr_2ksj 1 16 . GLN . rr_2ksj 1 17 . GLY . rr_2ksj 1 18 . ASP . rr_2ksj 1 19 . MET . rr_2ksj 1 20 . LYS . rr_2ksj 1 21 . ALA . rr_2ksj 1 22 . ILE . rr_2ksj 1 23 . GLY . rr_2ksj 1 24 . GLY . rr_2ksj 1 25 . TYR . rr_2ksj 1 26 . ILE . rr_2ksj 1 27 . VAL . rr_2ksj 1 28 . GLY . rr_2ksj 1 29 . ALA . rr_2ksj 1 30 . LEU . rr_2ksj 1 31 . VAL . rr_2ksj 1 32 . ILE . rr_2ksj 1 33 . LEU . rr_2ksj 1 34 . ALA . rr_2ksj 1 35 . VAL . rr_2ksj 1 36 . ALA . rr_2ksj 1 37 . GLY . rr_2ksj 1 38 . LEU . rr_2ksj 1 39 . ILE . rr_2ksj 1 40 . TYR . rr_2ksj 1 41 . SER . rr_2ksj 1 42 . MET . rr_2ksj 1 43 . LEU . rr_2ksj 1 44 . ARG . rr_2ksj 1 45 . LYS . rr_2ksj 1 46 . ALA . rr_2ksj 1 stop_ loop_ _Entity_poly_seq.Hetero _Entity_poly_seq.Mon_ID _Entity_poly_seq.Num _Entity_poly_seq.Comp_index_ID _Entity_poly_seq.Entry_ID _Entity_poly_seq.Entity_ID . GLY 1 1 rr_2ksj 1 . VAL 2 2 rr_2ksj 1 . ILE 3 3 rr_2ksj 1 . ASP 4 4 rr_2ksj 1 . THR 5 5 rr_2ksj 1 . SER 6 6 rr_2ksj 1 . ALA 7 7 rr_2ksj 1 . VAL 8 8 rr_2ksj 1 . GLU 9 9 rr_2ksj 1 . SER 10 10 rr_2ksj 1 . ALA 11 11 rr_2ksj 1 . ILE 12 12 rr_2ksj 1 . THR 13 13 rr_2ksj 1 . ASP 14 14 rr_2ksj 1 . GLY 15 15 rr_2ksj 1 . GLN 16 16 rr_2ksj 1 . GLY 17 17 rr_2ksj 1 . ASP 18 18 rr_2ksj 1 . MET 19 19 rr_2ksj 1 . LYS 20 20 rr_2ksj 1 . ALA 21 21 rr_2ksj 1 . ILE 22 22 rr_2ksj 1 . GLY 23 23 rr_2ksj 1 . GLY 24 24 rr_2ksj 1 . TYR 25 25 rr_2ksj 1 . ILE 26 26 rr_2ksj 1 . VAL 27 27 rr_2ksj 1 . GLY 28 28 rr_2ksj 1 . ALA 29 29 rr_2ksj 1 . LEU 30 30 rr_2ksj 1 . VAL 31 31 rr_2ksj 1 . ILE 32 32 rr_2ksj 1 . LEU 33 33 rr_2ksj 1 . ALA 34 34 rr_2ksj 1 . VAL 35 35 rr_2ksj 1 . ALA 36 36 rr_2ksj 1 . GLY 37 37 rr_2ksj 1 . LEU 38 38 rr_2ksj 1 . ILE 39 39 rr_2ksj 1 . TYR 40 40 rr_2ksj 1 . SER 41 41 rr_2ksj 1 . MET 42 42 rr_2ksj 1 . LEU 43 43 rr_2ksj 1 . ARG 44 44 rr_2ksj 1 . LYS 45 45 rr_2ksj 1 . ALA 46 46 rr_2ksj 1 stop_ save_ ############################## # Structure determinations # ############################## ########################## # Conformer statistics # ########################## save_conformer_statistics _Conformer_stat_list.Sf_category conformer_statistics _Conformer_stat_list.Sf_framecode conformer_statistics _Conformer_stat_list.Entry_ID rr_2ksj _Conformer_stat_list.ID 1 _Conformer_stat_list.Conf_family_coord_set_ID 1 _Conformer_stat_list.Conf_family_coord_set_label $Original_constraints_and_structures _Conformer_stat_list.Conformer_submitted_total_num 10 save_ ########################### # Constraint Statistics # ########################### save_constraint_statistics _Constraint_stat_list.Sf_framecode constraint_statistics _Constraint_stat_list.Sf_category constraint_statistics _Constraint_stat_list.Entry_ID rr_2ksj _Constraint_stat_list.ID 1 loop_ _Constraint_file.ID _Constraint_file.Constraint_filename _Constraint_file.Software_ID _Constraint_file.Software_label _Constraint_file.Software_name _Constraint_file.Block_ID _Constraint_file.Constraint_type _Constraint_file.Constraint_subtype _Constraint_file.Constraint_subsubtype _Constraint_file.Constraint_number _Constraint_file.Entry_ID _Constraint_file.Constraint_stat_list_ID 1 2ksj.mr . . 'MR format' 1 comment 'Not applicable' 'Not applicable' 0 rr_2ksj 1 1 2ksj.mr . . XPLOR/CNS 2 'dipolar coupling' 'Not applicable' 'Not applicable' 130 rr_2ksj 1 1 2ksj.mr . . XPLOR/CNS 3 'dihedral angle' 'Not applicable' 'Not applicable' 136 rr_2ksj 1 1 2ksj.mr . . 'MR format' 4 'nomenclature mapping' 'Not applicable' 'Not applicable' 0 rr_2ksj 1 stop_ save_ save_CNS/XPLOR_dihedral_3 _Torsion_angle_constraint_list.Sf_category torsion_angle_constraints _Torsion_angle_constraint_list.Sf_framecode CNS/XPLOR_dihedral_3 _Torsion_angle_constraint_list.Entry_ID rr_2ksj _Torsion_angle_constraint_list.ID 1 _Torsion_angle_constraint_list.Details 'Generated by Wattos' _Torsion_angle_constraint_list.Constraint_file_ID 1 _Torsion_angle_constraint_list.Block_ID 3 loop_ _Torsion_angle_constraint_software.Software_ID _Torsion_angle_constraint_software.Software_label _Torsion_angle_constraint_software.Method_ID _Torsion_angle_constraint_software.Method_label _Torsion_angle_constraint_software.Entry_ID _Torsion_angle_constraint_software.Torsion_angle_constraint_list_ID . . . . rr_2ksj 1 stop_ loop_ _Torsion_angle_constraint.ID _Torsion_angle_constraint.Torsion_angle_name _Torsion_angle_constraint.Assembly_atom_ID_1 _Torsion_angle_constraint.Entity_assembly_ID_1 _Torsion_angle_constraint.Entity_ID_1 _Torsion_angle_constraint.Comp_index_ID_1 _Torsion_angle_constraint.Seq_ID_1 _Torsion_angle_constraint.Comp_ID_1 _Torsion_angle_constraint.Atom_ID_1 _Torsion_angle_constraint.Atom_type_1 _Torsion_angle_constraint.Resonance_ID_1 _Torsion_angle_constraint.Assembly_atom_ID_2 _Torsion_angle_constraint.Entity_assembly_ID_2 _Torsion_angle_constraint.Entity_ID_2 _Torsion_angle_constraint.Comp_index_ID_2 _Torsion_angle_constraint.Seq_ID_2 _Torsion_angle_constraint.Comp_ID_2 _Torsion_angle_constraint.Atom_ID_2 _Torsion_angle_constraint.Atom_type_2 _Torsion_angle_constraint.Resonance_ID_2 _Torsion_angle_constraint.Assembly_atom_ID_3 _Torsion_angle_constraint.Entity_assembly_ID_3 _Torsion_angle_constraint.Entity_ID_3 _Torsion_angle_constraint.Comp_index_ID_3 _Torsion_angle_constraint.Seq_ID_3 _Torsion_angle_constraint.Comp_ID_3 _Torsion_angle_constraint.Atom_ID_3 _Torsion_angle_constraint.Atom_type_3 _Torsion_angle_constraint.Resonance_ID_3 _Torsion_angle_constraint.Assembly_atom_ID_4 _Torsion_angle_constraint.Entity_assembly_ID_4 _Torsion_angle_constraint.Entity_ID_4 _Torsion_angle_constraint.Comp_index_ID_4 _Torsion_angle_constraint.Seq_ID_4 _Torsion_angle_constraint.Comp_ID_4 _Torsion_angle_constraint.Atom_ID_4 _Torsion_angle_constraint.Atom_type_4 _Torsion_angle_constraint.Resonance_ID_4 _Torsion_angle_constraint.Angle_lower_bound_val _Torsion_angle_constraint.Angle_upper_bound_val _Torsion_angle_constraint.Source_experiment_ID _Torsion_angle_constraint.PDB_record_ID_1 _Torsion_angle_constraint.PDB_model_num_1 _Torsion_angle_constraint.PDB_strand_ID_1 _Torsion_angle_constraint.PDB_ins_code_1 _Torsion_angle_constraint.PDB_residue_no_1 _Torsion_angle_constraint.PDB_residue_name_1 _Torsion_angle_constraint.PDB_atom_name_1 _Torsion_angle_constraint.PDB_record_ID_2 _Torsion_angle_constraint.PDB_model_num_2 _Torsion_angle_constraint.PDB_strand_ID_2 _Torsion_angle_constraint.PDB_ins_code_2 _Torsion_angle_constraint.PDB_residue_no_2 _Torsion_angle_constraint.PDB_residue_name_2 _Torsion_angle_constraint.PDB_atom_name_2 _Torsion_angle_constraint.PDB_record_ID_3 _Torsion_angle_constraint.PDB_model_num_3 _Torsion_angle_constraint.PDB_strand_ID_3 _Torsion_angle_constraint.PDB_ins_code_3 _Torsion_angle_constraint.PDB_residue_no_3 _Torsion_angle_constraint.PDB_residue_name_3 _Torsion_angle_constraint.PDB_atom_name_3 _Torsion_angle_constraint.PDB_record_ID_4 _Torsion_angle_constraint.PDB_model_num_4 _Torsion_angle_constraint.PDB_strand_ID_4 _Torsion_angle_constraint.PDB_ins_code_4 _Torsion_angle_constraint.PDB_residue_no_4 _Torsion_angle_constraint.PDB_residue_name_4 _Torsion_angle_constraint.PDB_atom_name_4 _Torsion_angle_constraint.Auth_entity_assembly_ID_1 _Torsion_angle_constraint.Auth_asym_ID_1 _Torsion_angle_constraint.Auth_chain_ID_1 _Torsion_angle_constraint.Auth_seq_ID_1 _Torsion_angle_constraint.Auth_comp_ID_1 _Torsion_angle_constraint.Auth_atom_ID_1 _Torsion_angle_constraint.Auth_alt_ID_1 _Torsion_angle_constraint.Auth_atom_name_1 _Torsion_angle_constraint.Auth_entity_assembly_ID_2 _Torsion_angle_constraint.Auth_asym_ID_2 _Torsion_angle_constraint.Auth_chain_ID_2 _Torsion_angle_constraint.Auth_seq_ID_2 _Torsion_angle_constraint.Auth_comp_ID_2 _Torsion_angle_constraint.Auth_atom_ID_2 _Torsion_angle_constraint.Auth_alt_ID_2 _Torsion_angle_constraint.Auth_atom_name_2 _Torsion_angle_constraint.Auth_entity_assembly_ID_3 _Torsion_angle_constraint.Auth_asym_ID_3 _Torsion_angle_constraint.Auth_chain_ID_3 _Torsion_angle_constraint.Auth_seq_ID_3 _Torsion_angle_constraint.Auth_comp_ID_3 _Torsion_angle_constraint.Auth_atom_ID_3 _Torsion_angle_constraint.Auth_alt_ID_3 _Torsion_angle_constraint.Auth_atom_name_3 _Torsion_angle_constraint.Auth_entity_assembly_ID_4 _Torsion_angle_constraint.Auth_asym_ID_4 _Torsion_angle_constraint.Auth_chain_ID_4 _Torsion_angle_constraint.Auth_seq_ID_4 _Torsion_angle_constraint.Auth_comp_ID_4 _Torsion_angle_constraint.Auth_atom_ID_4 _Torsion_angle_constraint.Auth_alt_ID_4 _Torsion_angle_constraint.Auth_atom_name_4 _Torsion_angle_constraint.Entry_ID _Torsion_angle_constraint.Torsion_angle_constraint_list_ID 1 . . 1 1 4 4 ASP C C . . 1 1 5 5 THR N N . . 1 1 5 5 THR CA C . . 1 1 5 5 THR C C . -72.0 -52.0 . . . A . 4 ASP C . . A . 5 THR N . . A . 5 THR CA . . A . 5 THR C . . . 4 . C . . . . . 5 . N . . . . . 5 . CA . . . . . 5 . C . . rr_2ksj 1 2 . . 1 1 4 4 ASP C C . . 1 1 5 5 THR N N . . 1 1 5 5 THR CA C . . 1 1 5 5 THR C C . -72.0 -52.0 . . . A . 4 ASP C . . A . 5 THR N . . A . 5 THR CA . . A . 5 THR C . . . 4 . C . . . . . 5 . N . . . . . 5 . CA . . . . . 5 . C . . rr_2ksj 1 3 . . 1 1 5 5 THR N N . . 1 1 5 5 THR CA C . . 1 1 5 5 THR C C . . 1 1 6 6 SER N N . -51.0 -31.0 . . . A . 5 THR N . . A . 5 THR CA . . A . 5 THR C . . A . 6 SER N . . . 5 . N . . . . . 5 . CA . . . . . 5 . C . . . . . 6 . N . . rr_2ksj 1 4 . . 1 1 5 5 THR N N . . 1 1 5 5 THR CA C . . 1 1 5 5 THR C C . . 1 1 6 6 SER N N . -51.0 -31.0 . . . A . 5 THR N . . A . 5 THR CA . . A . 5 THR C . . A . 6 SER N . . . 5 . N . . . . . 5 . CA . . . . . 5 . C . . . . . 6 . N . . rr_2ksj 1 5 . . 1 1 5 5 THR C C . . 1 1 6 6 SER N N . . 1 1 6 6 SER CA C . . 1 1 6 6 SER C C . -72.0 -52.0 . . . A . 5 THR C . . A . 6 SER N . . A . 6 SER CA . . A . 6 SER C . . . 5 . C . . . . . 6 . N . . . . . 6 . CA . . . . . 6 . C . . rr_2ksj 1 6 . . 1 1 5 5 THR C C . . 1 1 6 6 SER N N . . 1 1 6 6 SER CA C . . 1 1 6 6 SER C C . -72.0 -52.0 . . . A . 5 THR C . . A . 6 SER N . . A . 6 SER CA . . A . 6 SER C . . . 5 . C . . . . . 6 . N . . . . . 6 . CA . . . . . 6 . C . . rr_2ksj 1 7 . . 1 1 6 6 SER N N . . 1 1 6 6 SER CA C . . 1 1 6 6 SER C C . . 1 1 7 7 ALA N N . -51.0 -31.0 . . . A . 6 SER N . . A . 6 SER CA . . A . 6 SER C . . A . 7 ALA N . . . 6 . N . . . . . 6 . CA . . . . . 6 . C . . . . . 7 . N . . rr_2ksj 1 8 . . 1 1 6 6 SER N N . . 1 1 6 6 SER CA C . . 1 1 6 6 SER C C . . 1 1 7 7 ALA N N . -51.0 -31.0 . . . A . 6 SER N . . A . 6 SER CA . . A . 6 SER C . . A . 7 ALA N . . . 6 . N . . . . . 6 . CA . . . . . 6 . C . . . . . 7 . N . . rr_2ksj 1 9 . . 1 1 6 6 SER C C . . 1 1 7 7 ALA N N . . 1 1 7 7 ALA CA C . . 1 1 7 7 ALA C C . -72.0 -52.0 . . . A . 6 SER C . . A . 7 ALA N . . A . 7 ALA CA . . A . 7 ALA C . . . 6 . C . . . . . 7 . N . . . . . 7 . CA . . . . . 7 . C . . rr_2ksj 1 10 . . 1 1 6 6 SER C C . . 1 1 7 7 ALA N N . . 1 1 7 7 ALA CA C . . 1 1 7 7 ALA C C . -72.0 -52.0 . . . A . 6 SER C . . A . 7 ALA N . . A . 7 ALA CA . . A . 7 ALA C . . . 6 . C . . . . . 7 . N . . . . . 7 . CA . . . . . 7 . C . . rr_2ksj 1 11 . . 1 1 7 7 ALA N N . . 1 1 7 7 ALA CA C . . 1 1 7 7 ALA C C . . 1 1 8 8 VAL N N . -51.0 -31.0 . . . A . 7 ALA N . . A . 7 ALA CA . . A . 7 ALA C . . A . 8 VAL N . . . 7 . N . . . . . 7 . CA . . . . . 7 . C . . . . . 8 . N . . rr_2ksj 1 12 . . 1 1 7 7 ALA N N . . 1 1 7 7 ALA CA C . . 1 1 7 7 ALA C C . . 1 1 8 8 VAL N N . -51.0 -31.0 . . . A . 7 ALA N . . A . 7 ALA CA . . A . 7 ALA C . . A . 8 VAL N . . . 7 . N . . . . . 7 . CA . . . . . 7 . C . . . . . 8 . N . . rr_2ksj 1 13 . . 1 1 7 7 ALA C C . . 1 1 8 8 VAL N N . . 1 1 8 8 VAL CA C . . 1 1 8 8 VAL C C . -72.0 -52.0 . . . A . 7 ALA C . . A . 8 VAL N . . A . 8 VAL CA . . A . 8 VAL C . . . 7 . C . . . . . 8 . N . . . . . 8 . CA . . . . . 8 . C . . rr_2ksj 1 14 . . 1 1 7 7 ALA C C . . 1 1 8 8 VAL N N . . 1 1 8 8 VAL CA C . . 1 1 8 8 VAL C C . -72.0 -52.0 . . . A . 7 ALA C . . A . 8 VAL N . . A . 8 VAL CA . . A . 8 VAL C . . . 7 . C . . . . . 8 . N . . . . . 8 . CA . . . . . 8 . C . . rr_2ksj 1 15 . . 1 1 8 8 VAL N N . . 1 1 8 8 VAL CA C . . 1 1 8 8 VAL C C . . 1 1 9 9 GLU N N . -51.0 -31.0 . . . A . 8 VAL N . . A . 8 VAL CA . . A . 8 VAL C . . A . 9 GLU N . . . 8 . N . . . . . 8 . CA . . . . . 8 . C . . . . . 9 . N . . rr_2ksj 1 16 . . 1 1 8 8 VAL N N . . 1 1 8 8 VAL CA C . . 1 1 8 8 VAL C C . . 1 1 9 9 GLU N N . -51.0 -31.0 . . . A . 8 VAL N . . A . 8 VAL CA . . A . 8 VAL C . . A . 9 GLU N . . . 8 . N . . . . . 8 . CA . . . . . 8 . C . . . . . 9 . N . . rr_2ksj 1 17 . . 1 1 8 8 VAL C C . . 1 1 9 9 GLU N N . . 1 1 9 9 GLU CA C . . 1 1 9 9 GLU C C . -72.0 -52.0 . . . A . 8 VAL C . . A . 9 GLU N . . A . 9 GLU CA . . A . 9 GLU C . . . 8 . C . . . . . 9 . N . . . . . 9 . CA . . . . . 9 . C . . rr_2ksj 1 18 . . 1 1 8 8 VAL C C . . 1 1 9 9 GLU N N . . 1 1 9 9 GLU CA C . . 1 1 9 9 GLU C C . -72.0 -52.0 . . . A . 8 VAL C . . A . 9 GLU N . . A . 9 GLU CA . . A . 9 GLU C . . . 8 . C . . . . . 9 . N . . . . . 9 . CA . . . . . 9 . C . . rr_2ksj 1 19 . . 1 1 9 9 GLU N N . . 1 1 9 9 GLU CA C . . 1 1 9 9 GLU C C . . 1 1 10 10 SER N N . -51.0 -31.0 . . . A . 9 GLU N . . A . 9 GLU CA . . A . 9 GLU C . . A . 10 SER N . . . 9 . N . . . . . 9 . CA . . . . . 9 . C . . . . . 10 . N . . rr_2ksj 1 20 . . 1 1 9 9 GLU N N . . 1 1 9 9 GLU CA C . . 1 1 9 9 GLU C C . . 1 1 10 10 SER N N . -51.0 -31.0 . . . A . 9 GLU N . . A . 9 GLU CA . . A . 9 GLU C . . A . 10 SER N . . . 9 . N . . . . . 9 . CA . . . . . 9 . C . . . . . 10 . N . . rr_2ksj 1 21 . . 1 1 9 9 GLU C C . . 1 1 10 10 SER N N . . 1 1 10 10 SER CA C . . 1 1 10 10 SER C C . -72.0 -52.0 . . . A . 9 GLU C . . A . 10 SER N . . A . 10 SER CA . . A . 10 SER C . . . 9 . C . . . . . 10 . N . . . . . 10 . CA . . . . . 10 . C . . rr_2ksj 1 22 . . 1 1 9 9 GLU C C . . 1 1 10 10 SER N N . . 1 1 10 10 SER CA C . . 1 1 10 10 SER C C . -72.0 -52.0 . . . A . 9 GLU C . . A . 10 SER N . . A . 10 SER CA . . A . 10 SER C . . . 9 . C . . . . . 10 . N . . . . . 10 . CA . . . . . 10 . C . . rr_2ksj 1 23 . . 1 1 10 10 SER N N . . 1 1 10 10 SER CA C . . 1 1 10 10 SER C C . . 1 1 11 11 ALA N N . -51.0 -31.0 . . . A . 10 SER N . . A . 10 SER CA . . A . 10 SER C . . A . 11 ALA N . . . 10 . N . . . . . 10 . CA . . . . . 10 . C . . . . . 11 . N . . rr_2ksj 1 24 . . 1 1 10 10 SER N N . . 1 1 10 10 SER CA C . . 1 1 10 10 SER C C . . 1 1 11 11 ALA N N . -51.0 -31.0 . . . A . 10 SER N . . A . 10 SER CA . . A . 10 SER C . . A . 11 ALA N . . . 10 . N . . . . . 10 . CA . . . . . 10 . C . . . . . 11 . N . . rr_2ksj 1 25 . . 1 1 10 10 SER C C . . 1 1 11 11 ALA N N . . 1 1 11 11 ALA CA C . . 1 1 11 11 ALA C C . -72.0 -52.0 . . . A . 10 SER C . . A . 11 ALA N . . A . 11 ALA CA . . A . 11 ALA C . . . 10 . C . . . . . 11 . N . . . . . 11 . CA . . . . . 11 . C . . rr_2ksj 1 26 . . 1 1 10 10 SER C C . . 1 1 11 11 ALA N N . . 1 1 11 11 ALA CA C . . 1 1 11 11 ALA C C . -72.0 -52.0 . . . A . 10 SER C . . A . 11 ALA N . . A . 11 ALA CA . . A . 11 ALA C . . . 10 . C . . . . . 11 . N . . . . . 11 . CA . . . . . 11 . C . . rr_2ksj 1 27 . . 1 1 11 11 ALA N N . . 1 1 11 11 ALA CA C . . 1 1 11 11 ALA C C . . 1 1 12 12 ILE N N . -51.0 -31.0 . . . A . 11 ALA N . . A . 11 ALA CA . . A . 11 ALA C . . A . 12 ILE N . . . 11 . N . . . . . 11 . CA . . . . . 11 . C . . . . . 12 . N . . rr_2ksj 1 28 . . 1 1 11 11 ALA N N . . 1 1 11 11 ALA CA C . . 1 1 11 11 ALA C C . . 1 1 12 12 ILE N N . -51.0 -31.0 . . . A . 11 ALA N . . A . 11 ALA CA . . A . 11 ALA C . . A . 12 ILE N . . . 11 . N . . . . . 11 . CA . . . . . 11 . C . . . . . 12 . N . . rr_2ksj 1 29 . . 1 1 11 11 ALA C C . . 1 1 12 12 ILE N N . . 1 1 12 12 ILE CA C . . 1 1 12 12 ILE C C . -72.0 -52.0 . . . A . 11 ALA C . . A . 12 ILE N . . A . 12 ILE CA . . A . 12 ILE C . . . 11 . C . . . . . 12 . N . . . . . 12 . CA . . . . . 12 . C . . rr_2ksj 1 30 . . 1 1 11 11 ALA C C . . 1 1 12 12 ILE N N . . 1 1 12 12 ILE CA C . . 1 1 12 12 ILE C C . -72.0 -52.0 . . . A . 11 ALA C . . A . 12 ILE N . . A . 12 ILE CA . . A . 12 ILE C . . . 11 . C . . . . . 12 . N . . . . . 12 . CA . . . . . 12 . C . . rr_2ksj 1 31 . . 1 1 12 12 ILE N N . . 1 1 12 12 ILE CA C . . 1 1 12 12 ILE C C . . 1 1 13 13 THR N N . -51.0 -31.0 . . . A . 12 ILE N . . A . 12 ILE CA . . A . 12 ILE C . . A . 13 THR N . . . 12 . N . . . . . 12 . CA . . . . . 12 . C . . . . . 13 . N . . rr_2ksj 1 32 . . 1 1 12 12 ILE N N . . 1 1 12 12 ILE CA C . . 1 1 12 12 ILE C C . . 1 1 13 13 THR N N . -51.0 -31.0 . . . A . 12 ILE N . . A . 12 ILE CA . . A . 12 ILE C . . A . 13 THR N . . . 12 . N . . . . . 12 . CA . . . . . 12 . C . . . . . 13 . N . . rr_2ksj 1 33 . . 1 1 12 12 ILE C C . . 1 1 13 13 THR N N . . 1 1 13 13 THR CA C . . 1 1 13 13 THR C C . -72.0 -52.0 . . . A . 12 ILE C . . A . 13 THR N . . A . 13 THR CA . . A . 13 THR C . . . 12 . C . . . . . 13 . N . . . . . 13 . CA . . . . . 13 . C . . rr_2ksj 1 34 . . 1 1 12 12 ILE C C . . 1 1 13 13 THR N N . . 1 1 13 13 THR CA C . . 1 1 13 13 THR C C . -72.0 -52.0 . . . A . 12 ILE C . . A . 13 THR N . . A . 13 THR CA . . A . 13 THR C . . . 12 . C . . . . . 13 . N . . . . . 13 . CA . . . . . 13 . C . . rr_2ksj 1 35 . . 1 1 13 13 THR N N . . 1 1 13 13 THR CA C . . 1 1 13 13 THR C C . . 1 1 14 14 ASP N N . -51.0 -31.0 . . . A . 13 THR N . . A . 13 THR CA . . A . 13 THR C . . A . 14 ASP N . . . 13 . N . . . . . 13 . CA . . . . . 13 . C . . . . . 14 . N . . rr_2ksj 1 36 . . 1 1 13 13 THR N N . . 1 1 13 13 THR CA C . . 1 1 13 13 THR C C . . 1 1 14 14 ASP N N . -51.0 -31.0 . . . A . 13 THR N . . A . 13 THR CA . . A . 13 THR C . . A . 14 ASP N . . . 13 . N . . . . . 13 . CA . . . . . 13 . C . . . . . 14 . N . . rr_2ksj 1 37 . . 1 1 19 19 MET C C . . 1 1 20 20 LYS N N . . 1 1 20 20 LYS CA C . . 1 1 20 20 LYS C C . -72.0 -52.0 . . . A . 19 MET C . . A . 20 LYS N . . A . 20 LYS CA . . A . 20 LYS C . . . 19 . C . . . . . 20 . N . . . . . 20 . CA . . . . . 20 . C . . rr_2ksj 1 38 . . 1 1 19 19 MET C C . . 1 1 20 20 LYS N N . . 1 1 20 20 LYS CA C . . 1 1 20 20 LYS C C . -72.0 -52.0 . . . A . 19 MET C . . A . 20 LYS N . . A . 20 LYS CA . . A . 20 LYS C . . . 19 . C . . . . . 20 . N . . . . . 20 . CA . . . . . 20 . C . . rr_2ksj 1 39 . . 1 1 20 20 LYS N N . . 1 1 20 20 LYS CA C . . 1 1 20 20 LYS C C . . 1 1 21 21 ALA N N . -51.0 -31.0 . . . A . 20 LYS N . . A . 20 LYS CA . . A . 20 LYS C . . A . 21 ALA N . . . 20 . N . . . . . 20 . CA . . . . . 20 . C . . . . . 21 . N . . rr_2ksj 1 40 . . 1 1 20 20 LYS N N . . 1 1 20 20 LYS CA C . . 1 1 20 20 LYS C C . . 1 1 21 21 ALA N N . -51.0 -31.0 . . . A . 20 LYS N . . A . 20 LYS CA . . A . 20 LYS C . . A . 21 ALA N . . . 20 . N . . . . . 20 . CA . . . . . 20 . C . . . . . 21 . N . . rr_2ksj 1 41 . . 1 1 20 20 LYS C C . . 1 1 21 21 ALA N N . . 1 1 21 21 ALA CA C . . 1 1 21 21 ALA C C . -72.0 -52.0 . . . A . 20 LYS C . . A . 21 ALA N . . A . 21 ALA CA . . A . 21 ALA C . . . 20 . C . . . . . 21 . N . . . . . 21 . CA . . . . . 21 . C . . rr_2ksj 1 42 . . 1 1 20 20 LYS C C . . 1 1 21 21 ALA N N . . 1 1 21 21 ALA CA C . . 1 1 21 21 ALA C C . -72.0 -52.0 . . . A . 20 LYS C . . A . 21 ALA N . . A . 21 ALA CA . . A . 21 ALA C . . . 20 . C . . . . . 21 . N . . . . . 21 . CA . . . . . 21 . C . . rr_2ksj 1 43 . . 1 1 21 21 ALA N N . . 1 1 21 21 ALA CA C . . 1 1 21 21 ALA C C . . 1 1 22 22 ILE N N . -51.0 -31.0 . . . A . 21 ALA N . . A . 21 ALA CA . . A . 21 ALA C . . A . 22 ILE N . . . 21 . N . . . . . 21 . CA . . . . . 21 . C . . . . . 22 . N . . rr_2ksj 1 44 . . 1 1 21 21 ALA N N . . 1 1 21 21 ALA CA C . . 1 1 21 21 ALA C C . . 1 1 22 22 ILE N N . -51.0 -31.0 . . . A . 21 ALA N . . A . 21 ALA CA . . A . 21 ALA C . . A . 22 ILE N . . . 21 . N . . . . . 21 . CA . . . . . 21 . C . . . . . 22 . N . . rr_2ksj 1 45 . . 1 1 21 21 ALA C C . . 1 1 22 22 ILE N N . . 1 1 22 22 ILE CA C . . 1 1 22 22 ILE C C . -72.0 -52.0 . . . A . 21 ALA C . . A . 22 ILE N . . A . 22 ILE CA . . A . 22 ILE C . . . 21 . C . . . . . 22 . N . . . . . 22 . CA . . . . . 22 . C . . rr_2ksj 1 46 . . 1 1 21 21 ALA C C . . 1 1 22 22 ILE N N . . 1 1 22 22 ILE CA C . . 1 1 22 22 ILE C C . -72.0 -52.0 . . . A . 21 ALA C . . A . 22 ILE N . . A . 22 ILE CA . . A . 22 ILE C . . . 21 . C . . . . . 22 . N . . . . . 22 . CA . . . . . 22 . C . . rr_2ksj 1 47 . . 1 1 22 22 ILE N N . . 1 1 22 22 ILE CA C . . 1 1 22 22 ILE C C . . 1 1 23 23 GLY N N . -51.0 -31.0 . . . A . 22 ILE N . . A . 22 ILE CA . . A . 22 ILE C . . A . 23 GLY N . . . 22 . N . . . . . 22 . CA . . . . . 22 . C . . . . . 23 . N . . rr_2ksj 1 48 . . 1 1 22 22 ILE N N . . 1 1 22 22 ILE CA C . . 1 1 22 22 ILE C C . . 1 1 23 23 GLY N N . -51.0 -31.0 . . . A . 22 ILE N . . A . 22 ILE CA . . A . 22 ILE C . . A . 23 GLY N . . . 22 . N . . . . . 22 . CA . . . . . 22 . C . . . . . 23 . N . . rr_2ksj 1 49 . . 1 1 22 22 ILE C C . . 1 1 23 23 GLY N N . . 1 1 23 23 GLY CA C . . 1 1 23 23 GLY C C . -72.0 -52.0 . . . A . 22 ILE C . . A . 23 GLY N . . A . 23 GLY CA . . A . 23 GLY C . . . 22 . C . . . . . 23 . N . . . . . 23 . CA . . . . . 23 . C . . rr_2ksj 1 50 . . 1 1 22 22 ILE C C . . 1 1 23 23 GLY N N . . 1 1 23 23 GLY CA C . . 1 1 23 23 GLY C C . -72.0 -52.0 . . . A . 22 ILE C . . A . 23 GLY N . . A . 23 GLY CA . . A . 23 GLY C . . . 22 . C . . . . . 23 . N . . . . . 23 . CA . . . . . 23 . C . . rr_2ksj 1 51 . . 1 1 23 23 GLY N N . . 1 1 23 23 GLY CA C . . 1 1 23 23 GLY C C . . 1 1 24 24 GLY N N . -51.0 -31.0 . . . A . 23 GLY N . . A . 23 GLY CA . . A . 23 GLY C . . A . 24 GLY N . . . 23 . N . . . . . 23 . CA . . . . . 23 . C . . . . . 24 . N . . rr_2ksj 1 52 . . 1 1 23 23 GLY N N . . 1 1 23 23 GLY CA C . . 1 1 23 23 GLY C C . . 1 1 24 24 GLY N N . -51.0 -31.0 . . . A . 23 GLY N . . A . 23 GLY CA . . A . 23 GLY C . . A . 24 GLY N . . . 23 . N . . . . . 23 . CA . . . . . 23 . C . . . . . 24 . N . . rr_2ksj 1 53 . . 1 1 23 23 GLY C C . . 1 1 24 24 GLY N N . . 1 1 24 24 GLY CA C . . 1 1 24 24 GLY C C . -72.0 -52.0 . . . A . 23 GLY C . . A . 24 GLY N . . A . 24 GLY CA . . A . 24 GLY C . . . 23 . C . . . . . 24 . N . . . . . 24 . CA . . . . . 24 . C . . rr_2ksj 1 54 . . 1 1 23 23 GLY C C . . 1 1 24 24 GLY N N . . 1 1 24 24 GLY CA C . . 1 1 24 24 GLY C C . -72.0 -52.0 . . . A . 23 GLY C . . A . 24 GLY N . . A . 24 GLY CA . . A . 24 GLY C . . . 23 . C . . . . . 24 . N . . . . . 24 . CA . . . . . 24 . C . . rr_2ksj 1 55 . . 1 1 24 24 GLY N N . . 1 1 24 24 GLY CA C . . 1 1 24 24 GLY C C . . 1 1 25 25 TYR N N . -51.0 -31.0 . . . A . 24 GLY N . . A . 24 GLY CA . . A . 24 GLY C . . A . 25 TYR N . . . 24 . N . . . . . 24 . CA . . . . . 24 . C . . . . . 25 . N . . rr_2ksj 1 56 . . 1 1 24 24 GLY N N . . 1 1 24 24 GLY CA C . . 1 1 24 24 GLY C C . . 1 1 25 25 TYR N N . -51.0 -31.0 . . . A . 24 GLY N . . A . 24 GLY CA . . A . 24 GLY C . . A . 25 TYR N . . . 24 . N . . . . . 24 . CA . . . . . 24 . C . . . . . 25 . N . . rr_2ksj 1 57 . . 1 1 24 24 GLY C C . . 1 1 25 25 TYR N N . . 1 1 25 25 TYR CA C . . 1 1 25 25 TYR C C . -72.0 -52.0 . . . A . 24 GLY C . . A . 25 TYR N . . A . 25 TYR CA . . A . 25 TYR C . . . 24 . C . . . . . 25 . N . . . . . 25 . CA . . . . . 25 . C . . rr_2ksj 1 58 . . 1 1 24 24 GLY C C . . 1 1 25 25 TYR N N . . 1 1 25 25 TYR CA C . . 1 1 25 25 TYR C C . -72.0 -52.0 . . . A . 24 GLY C . . A . 25 TYR N . . A . 25 TYR CA . . A . 25 TYR C . . . 24 . C . . . . . 25 . N . . . . . 25 . CA . . . . . 25 . C . . rr_2ksj 1 59 . . 1 1 25 25 TYR N N . . 1 1 25 25 TYR CA C . . 1 1 25 25 TYR C C . . 1 1 26 26 ILE N N . -51.0 -31.0 . . . A . 25 TYR N . . A . 25 TYR CA . . A . 25 TYR C . . A . 26 ILE N . . . 25 . N . . . . . 25 . CA . . . . . 25 . C . . . . . 26 . N . . rr_2ksj 1 60 . . 1 1 25 25 TYR N N . . 1 1 25 25 TYR CA C . . 1 1 25 25 TYR C C . . 1 1 26 26 ILE N N . -51.0 -31.0 . . . A . 25 TYR N . . A . 25 TYR CA . . A . 25 TYR C . . A . 26 ILE N . . . 25 . N . . . . . 25 . CA . . . . . 25 . C . . . . . 26 . N . . rr_2ksj 1 61 . . 1 1 25 25 TYR C C . . 1 1 26 26 ILE N N . . 1 1 26 26 ILE CA C . . 1 1 26 26 ILE C C . -72.0 -52.0 . . . A . 25 TYR C . . A . 26 ILE N . . A . 26 ILE CA . . A . 26 ILE C . . . 25 . C . . . . . 26 . N . . . . . 26 . CA . . . . . 26 . C . . rr_2ksj 1 62 . . 1 1 25 25 TYR C C . . 1 1 26 26 ILE N N . . 1 1 26 26 ILE CA C . . 1 1 26 26 ILE C C . -72.0 -52.0 . . . A . 25 TYR C . . A . 26 ILE N . . A . 26 ILE CA . . A . 26 ILE C . . . 25 . C . . . . . 26 . N . . . . . 26 . CA . . . . . 26 . C . . rr_2ksj 1 63 . . 1 1 26 26 ILE N N . . 1 1 26 26 ILE CA C . . 1 1 26 26 ILE C C . . 1 1 27 27 VAL N N . -51.0 -31.0 . . . A . 26 ILE N . . A . 26 ILE CA . . A . 26 ILE C . . A . 27 VAL N . . . 26 . N . . . . . 26 . CA . . . . . 26 . C . . . . . 27 . N . . rr_2ksj 1 64 . . 1 1 26 26 ILE N N . . 1 1 26 26 ILE CA C . . 1 1 26 26 ILE C C . . 1 1 27 27 VAL N N . -51.0 -31.0 . . . A . 26 ILE N . . A . 26 ILE CA . . A . 26 ILE C . . A . 27 VAL N . . . 26 . N . . . . . 26 . CA . . . . . 26 . C . . . . . 27 . N . . rr_2ksj 1 65 . . 1 1 26 26 ILE C C . . 1 1 27 27 VAL N N . . 1 1 27 27 VAL CA C . . 1 1 27 27 VAL C C . -72.0 -52.0 . . . A . 26 ILE C . . A . 27 VAL N . . A . 27 VAL CA . . A . 27 VAL C . . . 26 . C . . . . . 27 . N . . . . . 27 . CA . . . . . 27 . C . . rr_2ksj 1 66 . . 1 1 26 26 ILE C C . . 1 1 27 27 VAL N N . . 1 1 27 27 VAL CA C . . 1 1 27 27 VAL C C . -72.0 -52.0 . . . A . 26 ILE C . . A . 27 VAL N . . A . 27 VAL CA . . A . 27 VAL C . . . 26 . C . . . . . 27 . N . . . . . 27 . CA . . . . . 27 . C . . rr_2ksj 1 67 . . 1 1 27 27 VAL N N . . 1 1 27 27 VAL CA C . . 1 1 27 27 VAL C C . . 1 1 28 28 GLY N N . -51.0 -31.0 . . . A . 27 VAL N . . A . 27 VAL CA . . A . 27 VAL C . . A . 28 GLY N . . . 27 . N . . . . . 27 . CA . . . . . 27 . C . . . . . 28 . N . . rr_2ksj 1 68 . . 1 1 27 27 VAL N N . . 1 1 27 27 VAL CA C . . 1 1 27 27 VAL C C . . 1 1 28 28 GLY N N . -51.0 -31.0 . . . A . 27 VAL N . . A . 27 VAL CA . . A . 27 VAL C . . A . 28 GLY N . . . 27 . N . . . . . 27 . CA . . . . . 27 . C . . . . . 28 . N . . rr_2ksj 1 69 . . 1 1 27 27 VAL C C . . 1 1 28 28 GLY N N . . 1 1 28 28 GLY CA C . . 1 1 28 28 GLY C C . -72.0 -52.0 . . . A . 27 VAL C . . A . 28 GLY N . . A . 28 GLY CA . . A . 28 GLY C . . . 27 . C . . . . . 28 . N . . . . . 28 . CA . . . . . 28 . C . . rr_2ksj 1 70 . . 1 1 27 27 VAL C C . . 1 1 28 28 GLY N N . . 1 1 28 28 GLY CA C . . 1 1 28 28 GLY C C . -72.0 -52.0 . . . A . 27 VAL C . . A . 28 GLY N . . A . 28 GLY CA . . A . 28 GLY C . . . 27 . C . . . . . 28 . N . . . . . 28 . CA . . . . . 28 . C . . rr_2ksj 1 71 . . 1 1 28 28 GLY N N . . 1 1 28 28 GLY CA C . . 1 1 28 28 GLY C C . . 1 1 29 29 ALA N N . -51.0 -31.0 . . . A . 28 GLY N . . A . 28 GLY CA . . A . 28 GLY C . . A . 29 ALA N . . . 28 . N . . . . . 28 . CA . . . . . 28 . C . . . . . 29 . N . . rr_2ksj 1 72 . . 1 1 28 28 GLY N N . . 1 1 28 28 GLY CA C . . 1 1 28 28 GLY C C . . 1 1 29 29 ALA N N . -51.0 -31.0 . . . A . 28 GLY N . . A . 28 GLY CA . . A . 28 GLY C . . A . 29 ALA N . . . 28 . N . . . . . 28 . CA . . . . . 28 . C . . . . . 29 . N . . rr_2ksj 1 73 . . 1 1 28 28 GLY C C . . 1 1 29 29 ALA N N . . 1 1 29 29 ALA CA C . . 1 1 29 29 ALA C C . -72.0 -52.0 . . . A . 28 GLY C . . A . 29 ALA N . . A . 29 ALA CA . . A . 29 ALA C . . . 28 . C . . . . . 29 . N . . . . . 29 . CA . . . . . 29 . C . . rr_2ksj 1 74 . . 1 1 28 28 GLY C C . . 1 1 29 29 ALA N N . . 1 1 29 29 ALA CA C . . 1 1 29 29 ALA C C . -72.0 -52.0 . . . A . 28 GLY C . . A . 29 ALA N . . A . 29 ALA CA . . A . 29 ALA C . . . 28 . C . . . . . 29 . N . . . . . 29 . CA . . . . . 29 . C . . rr_2ksj 1 75 . . 1 1 29 29 ALA N N . . 1 1 29 29 ALA CA C . . 1 1 29 29 ALA C C . . 1 1 30 30 LEU N N . -51.0 -31.0 . . . A . 29 ALA N . . A . 29 ALA CA . . A . 29 ALA C . . A . 30 LEU N . . . 29 . N . . . . . 29 . CA . . . . . 29 . C . . . . . 30 . N . . rr_2ksj 1 76 . . 1 1 29 29 ALA N N . . 1 1 29 29 ALA CA C . . 1 1 29 29 ALA C C . . 1 1 30 30 LEU N N . -51.0 -31.0 . . . A . 29 ALA N . . A . 29 ALA CA . . A . 29 ALA C . . A . 30 LEU N . . . 29 . N . . . . . 29 . CA . . . . . 29 . C . . . . . 30 . N . . rr_2ksj 1 77 . . 1 1 29 29 ALA C C . . 1 1 30 30 LEU N N . . 1 1 30 30 LEU CA C . . 1 1 30 30 LEU C C . -72.0 -52.0 . . . A . 29 ALA C . . A . 30 LEU N . . A . 30 LEU CA . . A . 30 LEU C . . . 29 . C . . . . . 30 . N . . . . . 30 . CA . . . . . 30 . C . . rr_2ksj 1 78 . . 1 1 29 29 ALA C C . . 1 1 30 30 LEU N N . . 1 1 30 30 LEU CA C . . 1 1 30 30 LEU C C . -72.0 -52.0 . . . A . 29 ALA C . . A . 30 LEU N . . A . 30 LEU CA . . A . 30 LEU C . . . 29 . C . . . . . 30 . N . . . . . 30 . CA . . . . . 30 . C . . rr_2ksj 1 79 . . 1 1 30 30 LEU N N . . 1 1 30 30 LEU CA C . . 1 1 30 30 LEU C C . . 1 1 31 31 VAL N N . -51.0 -31.0 . . . A . 30 LEU N . . A . 30 LEU CA . . A . 30 LEU C . . A . 31 VAL N . . . 30 . N . . . . . 30 . CA . . . . . 30 . C . . . . . 31 . N . . rr_2ksj 1 80 . . 1 1 30 30 LEU N N . . 1 1 30 30 LEU CA C . . 1 1 30 30 LEU C C . . 1 1 31 31 VAL N N . -51.0 -31.0 . . . A . 30 LEU N . . A . 30 LEU CA . . A . 30 LEU C . . A . 31 VAL N . . . 30 . N . . . . . 30 . CA . . . . . 30 . C . . . . . 31 . N . . rr_2ksj 1 81 . . 1 1 30 30 LEU C C . . 1 1 31 31 VAL N N . . 1 1 31 31 VAL CA C . . 1 1 31 31 VAL C C . -72.0 -52.0 . . . A . 30 LEU C . . A . 31 VAL N . . A . 31 VAL CA . . A . 31 VAL C . . . 30 . C . . . . . 31 . N . . . . . 31 . CA . . . . . 31 . C . . rr_2ksj 1 82 . . 1 1 30 30 LEU C C . . 1 1 31 31 VAL N N . . 1 1 31 31 VAL CA C . . 1 1 31 31 VAL C C . -72.0 -52.0 . . . A . 30 LEU C . . A . 31 VAL N . . A . 31 VAL CA . . A . 31 VAL C . . . 30 . C . . . . . 31 . N . . . . . 31 . CA . . . . . 31 . C . . rr_2ksj 1 83 . . 1 1 31 31 VAL N N . . 1 1 31 31 VAL CA C . . 1 1 31 31 VAL C C . . 1 1 32 32 ILE N N . -51.0 -31.0 . . . A . 31 VAL N . . A . 31 VAL CA . . A . 31 VAL C . . A . 32 ILE N . . . 31 . N . . . . . 31 . CA . . . . . 31 . C . . . . . 32 . N . . rr_2ksj 1 84 . . 1 1 31 31 VAL N N . . 1 1 31 31 VAL CA C . . 1 1 31 31 VAL C C . . 1 1 32 32 ILE N N . -51.0 -31.0 . . . A . 31 VAL N . . A . 31 VAL CA . . A . 31 VAL C . . A . 32 ILE N . . . 31 . N . . . . . 31 . CA . . . . . 31 . C . . . . . 32 . N . . rr_2ksj 1 85 . . 1 1 31 31 VAL C C . . 1 1 32 32 ILE N N . . 1 1 32 32 ILE CA C . . 1 1 32 32 ILE C C . -72.0 -52.0 . . . A . 31 VAL C . . A . 32 ILE N . . A . 32 ILE CA . . A . 32 ILE C . . . 31 . C . . . . . 32 . N . . . . . 32 . CA . . . . . 32 . C . . rr_2ksj 1 86 . . 1 1 31 31 VAL C C . . 1 1 32 32 ILE N N . . 1 1 32 32 ILE CA C . . 1 1 32 32 ILE C C . -72.0 -52.0 . . . A . 31 VAL C . . A . 32 ILE N . . A . 32 ILE CA . . A . 32 ILE C . . . 31 . C . . . . . 32 . N . . . . . 32 . CA . . . . . 32 . C . . rr_2ksj 1 87 . . 1 1 32 32 ILE N N . . 1 1 32 32 ILE CA C . . 1 1 32 32 ILE C C . . 1 1 33 33 LEU N N . -51.0 -31.0 . . . A . 32 ILE N . . A . 32 ILE CA . . A . 32 ILE C . . A . 33 LEU N . . . 32 . N . . . . . 32 . CA . . . . . 32 . C . . . . . 33 . N . . rr_2ksj 1 88 . . 1 1 32 32 ILE N N . . 1 1 32 32 ILE CA C . . 1 1 32 32 ILE C C . . 1 1 33 33 LEU N N . -51.0 -31.0 . . . A . 32 ILE N . . A . 32 ILE CA . . A . 32 ILE C . . A . 33 LEU N . . . 32 . N . . . . . 32 . CA . . . . . 32 . C . . . . . 33 . N . . rr_2ksj 1 89 . . 1 1 32 32 ILE C C . . 1 1 33 33 LEU N N . . 1 1 33 33 LEU CA C . . 1 1 33 33 LEU C C . -72.0 -52.0 . . . A . 32 ILE C . . A . 33 LEU N . . A . 33 LEU CA . . A . 33 LEU C . . . 32 . C . . . . . 33 . N . . . . . 33 . CA . . . . . 33 . C . . rr_2ksj 1 90 . . 1 1 32 32 ILE C C . . 1 1 33 33 LEU N N . . 1 1 33 33 LEU CA C . . 1 1 33 33 LEU C C . -72.0 -52.0 . . . A . 32 ILE C . . A . 33 LEU N . . A . 33 LEU CA . . A . 33 LEU C . . . 32 . C . . . . . 33 . N . . . . . 33 . CA . . . . . 33 . C . . rr_2ksj 1 91 . . 1 1 33 33 LEU N N . . 1 1 33 33 LEU CA C . . 1 1 33 33 LEU C C . . 1 1 34 34 ALA N N . -51.0 -31.0 . . . A . 33 LEU N . . A . 33 LEU CA . . A . 33 LEU C . . A . 34 ALA N . . . 33 . N . . . . . 33 . CA . . . . . 33 . C . . . . . 34 . N . . rr_2ksj 1 92 . . 1 1 33 33 LEU N N . . 1 1 33 33 LEU CA C . . 1 1 33 33 LEU C C . . 1 1 34 34 ALA N N . -51.0 -31.0 . . . A . 33 LEU N . . A . 33 LEU CA . . A . 33 LEU C . . A . 34 ALA N . . . 33 . N . . . . . 33 . CA . . . . . 33 . C . . . . . 34 . N . . rr_2ksj 1 93 . . 1 1 33 33 LEU C C . . 1 1 34 34 ALA N N . . 1 1 34 34 ALA CA C . . 1 1 34 34 ALA C C . -72.0 -52.0 . . . A . 33 LEU C . . A . 34 ALA N . . A . 34 ALA CA . . A . 34 ALA C . . . 33 . C . . . . . 34 . N . . . . . 34 . CA . . . . . 34 . C . . rr_2ksj 1 94 . . 1 1 33 33 LEU C C . . 1 1 34 34 ALA N N . . 1 1 34 34 ALA CA C . . 1 1 34 34 ALA C C . -72.0 -52.0 . . . A . 33 LEU C . . A . 34 ALA N . . A . 34 ALA CA . . A . 34 ALA C . . . 33 . C . . . . . 34 . N . . . . . 34 . CA . . . . . 34 . C . . rr_2ksj 1 95 . . 1 1 34 34 ALA N N . . 1 1 34 34 ALA CA C . . 1 1 34 34 ALA C C . . 1 1 35 35 VAL N N . -51.0 -31.0 . . . A . 34 ALA N . . A . 34 ALA CA . . A . 34 ALA C . . A . 35 VAL N . . . 34 . N . . . . . 34 . CA . . . . . 34 . C . . . . . 35 . N . . rr_2ksj 1 96 . . 1 1 34 34 ALA N N . . 1 1 34 34 ALA CA C . . 1 1 34 34 ALA C C . . 1 1 35 35 VAL N N . -51.0 -31.0 . . . A . 34 ALA N . . A . 34 ALA CA . . A . 34 ALA C . . A . 35 VAL N . . . 34 . N . . . . . 34 . CA . . . . . 34 . C . . . . . 35 . N . . rr_2ksj 1 97 . . 1 1 34 34 ALA C C . . 1 1 35 35 VAL N N . . 1 1 35 35 VAL CA C . . 1 1 35 35 VAL C C . -72.0 -52.0 . . . A . 34 ALA C . . A . 35 VAL N . . A . 35 VAL CA . . A . 35 VAL C . . . 34 . C . . . . . 35 . N . . . . . 35 . CA . . . . . 35 . C . . rr_2ksj 1 98 . . 1 1 34 34 ALA C C . . 1 1 35 35 VAL N N . . 1 1 35 35 VAL CA C . . 1 1 35 35 VAL C C . -72.0 -52.0 . . . A . 34 ALA C . . A . 35 VAL N . . A . 35 VAL CA . . A . 35 VAL C . . . 34 . C . . . . . 35 . N . . . . . 35 . CA . . . . . 35 . C . . rr_2ksj 1 99 . . 1 1 35 35 VAL N N . . 1 1 35 35 VAL CA C . . 1 1 35 35 VAL C C . . 1 1 36 36 ALA N N . -51.0 -31.0 . . . A . 35 VAL N . . A . 35 VAL CA . . A . 35 VAL C . . A . 36 ALA N . . . 35 . N . . . . . 35 . CA . . . . . 35 . C . . . . . 36 . N . . rr_2ksj 1 100 . . 1 1 35 35 VAL N N . . 1 1 35 35 VAL CA C . . 1 1 35 35 VAL C C . . 1 1 36 36 ALA N N . -51.0 -31.0 . . . A . 35 VAL N . . A . 35 VAL CA . . A . 35 VAL C . . A . 36 ALA N . . . 35 . N . . . . . 35 . CA . . . . . 35 . C . . . . . 36 . N . . rr_2ksj 1 101 . . 1 1 35 35 VAL C C . . 1 1 36 36 ALA N N . . 1 1 36 36 ALA CA C . . 1 1 36 36 ALA C C . -72.0 -52.0 . . . A . 35 VAL C . . A . 36 ALA N . . A . 36 ALA CA . . A . 36 ALA C . . . 35 . C . . . . . 36 . N . . . . . 36 . CA . . . . . 36 . C . . rr_2ksj 1 102 . . 1 1 35 35 VAL C C . . 1 1 36 36 ALA N N . . 1 1 36 36 ALA CA C . . 1 1 36 36 ALA C C . -72.0 -52.0 . . . A . 35 VAL C . . A . 36 ALA N . . A . 36 ALA CA . . A . 36 ALA C . . . 35 . C . . . . . 36 . N . . . . . 36 . CA . . . . . 36 . C . . rr_2ksj 1 103 . . 1 1 36 36 ALA N N . . 1 1 36 36 ALA CA C . . 1 1 36 36 ALA C C . . 1 1 37 37 GLY N N . -51.0 -31.0 . . . A . 36 ALA N . . A . 36 ALA CA . . A . 36 ALA C . . A . 37 GLY N . . . 36 . N . . . . . 36 . CA . . . . . 36 . C . . . . . 37 . N . . rr_2ksj 1 104 . . 1 1 36 36 ALA N N . . 1 1 36 36 ALA CA C . . 1 1 36 36 ALA C C . . 1 1 37 37 GLY N N . -51.0 -31.0 . . . A . 36 ALA N . . A . 36 ALA CA . . A . 36 ALA C . . A . 37 GLY N . . . 36 . N . . . . . 36 . CA . . . . . 36 . C . . . . . 37 . N . . rr_2ksj 1 105 . . 1 1 36 36 ALA C C . . 1 1 37 37 GLY N N . . 1 1 37 37 GLY CA C . . 1 1 37 37 GLY C C . -72.0 -52.0 . . . A . 36 ALA C . . A . 37 GLY N . . A . 37 GLY CA . . A . 37 GLY C . . . 36 . C . . . . . 37 . N . . . . . 37 . CA . . . . . 37 . C . . rr_2ksj 1 106 . . 1 1 36 36 ALA C C . . 1 1 37 37 GLY N N . . 1 1 37 37 GLY CA C . . 1 1 37 37 GLY C C . -72.0 -52.0 . . . A . 36 ALA C . . A . 37 GLY N . . A . 37 GLY CA . . A . 37 GLY C . . . 36 . C . . . . . 37 . N . . . . . 37 . CA . . . . . 37 . C . . rr_2ksj 1 107 . . 1 1 37 37 GLY N N . . 1 1 37 37 GLY CA C . . 1 1 37 37 GLY C C . . 1 1 38 38 LEU N N . -51.0 -31.0 . . . A . 37 GLY N . . A . 37 GLY CA . . A . 37 GLY C . . A . 38 LEU N . . . 37 . N . . . . . 37 . CA . . . . . 37 . C . . . . . 38 . N . . rr_2ksj 1 108 . . 1 1 37 37 GLY N N . . 1 1 37 37 GLY CA C . . 1 1 37 37 GLY C C . . 1 1 38 38 LEU N N . -51.0 -31.0 . . . A . 37 GLY N . . A . 37 GLY CA . . A . 37 GLY C . . A . 38 LEU N . . . 37 . N . . . . . 37 . CA . . . . . 37 . C . . . . . 38 . N . . rr_2ksj 1 109 . . 1 1 37 37 GLY C C . . 1 1 38 38 LEU N N . . 1 1 38 38 LEU CA C . . 1 1 38 38 LEU C C . -72.0 -52.0 . . . A . 37 GLY C . . A . 38 LEU N . . A . 38 LEU CA . . A . 38 LEU C . . . 37 . C . . . . . 38 . N . . . . . 38 . CA . . . . . 38 . C . . rr_2ksj 1 110 . . 1 1 37 37 GLY C C . . 1 1 38 38 LEU N N . . 1 1 38 38 LEU CA C . . 1 1 38 38 LEU C C . -72.0 -52.0 . . . A . 37 GLY C . . A . 38 LEU N . . A . 38 LEU CA . . A . 38 LEU C . . . 37 . C . . . . . 38 . N . . . . . 38 . CA . . . . . 38 . C . . rr_2ksj 1 111 . . 1 1 38 38 LEU N N . . 1 1 38 38 LEU CA C . . 1 1 38 38 LEU C C . . 1 1 39 39 ILE N N . -51.0 -31.0 . . . A . 38 LEU N . . A . 38 LEU CA . . A . 38 LEU C . . A . 39 ILE N . . . 38 . N . . . . . 38 . CA . . . . . 38 . C . . . . . 39 . N . . rr_2ksj 1 112 . . 1 1 38 38 LEU N N . . 1 1 38 38 LEU CA C . . 1 1 38 38 LEU C C . . 1 1 39 39 ILE N N . -51.0 -31.0 . . . A . 38 LEU N . . A . 38 LEU CA . . A . 38 LEU C . . A . 39 ILE N . . . 38 . N . . . . . 38 . CA . . . . . 38 . C . . . . . 39 . N . . rr_2ksj 1 113 . . 1 1 38 38 LEU C C . . 1 1 39 39 ILE N N . . 1 1 39 39 ILE CA C . . 1 1 39 39 ILE C C . -72.0 -52.0 . . . A . 38 LEU C . . A . 39 ILE N . . A . 39 ILE CA . . A . 39 ILE C . . . 38 . C . . . . . 39 . N . . . . . 39 . CA . . . . . 39 . C . . rr_2ksj 1 114 . . 1 1 38 38 LEU C C . . 1 1 39 39 ILE N N . . 1 1 39 39 ILE CA C . . 1 1 39 39 ILE C C . -72.0 -52.0 . . . A . 38 LEU C . . A . 39 ILE N . . A . 39 ILE CA . . A . 39 ILE C . . . 38 . C . . . . . 39 . N . . . . . 39 . CA . . . . . 39 . C . . rr_2ksj 1 115 . . 1 1 39 39 ILE N N . . 1 1 39 39 ILE CA C . . 1 1 39 39 ILE C C . . 1 1 40 40 TYR N N . -51.0 -31.0 . . . A . 39 ILE N . . A . 39 ILE CA . . A . 39 ILE C . . A . 40 TYR N . . . 39 . N . . . . . 39 . CA . . . . . 39 . C . . . . . 40 . N . . rr_2ksj 1 116 . . 1 1 39 39 ILE N N . . 1 1 39 39 ILE CA C . . 1 1 39 39 ILE C C . . 1 1 40 40 TYR N N . -51.0 -31.0 . . . A . 39 ILE N . . A . 39 ILE CA . . A . 39 ILE C . . A . 40 TYR N . . . 39 . N . . . . . 39 . CA . . . . . 39 . C . . . . . 40 . N . . rr_2ksj 1 117 . . 1 1 39 39 ILE C C . . 1 1 40 40 TYR N N . . 1 1 40 40 TYR CA C . . 1 1 40 40 TYR C C . -72.0 -52.0 . . . A . 39 ILE C . . A . 40 TYR N . . A . 40 TYR CA . . A . 40 TYR C . . . 39 . C . . . . . 40 . N . . . . . 40 . CA . . . . . 40 . C . . rr_2ksj 1 118 . . 1 1 39 39 ILE C C . . 1 1 40 40 TYR N N . . 1 1 40 40 TYR CA C . . 1 1 40 40 TYR C C . -72.0 -52.0 . . . A . 39 ILE C . . A . 40 TYR N . . A . 40 TYR CA . . A . 40 TYR C . . . 39 . C . . . . . 40 . N . . . . . 40 . CA . . . . . 40 . C . . rr_2ksj 1 119 . . 1 1 40 40 TYR N N . . 1 1 40 40 TYR CA C . . 1 1 40 40 TYR C C . . 1 1 41 41 SER N N . -51.0 -31.0 . . . A . 40 TYR N . . A . 40 TYR CA . . A . 40 TYR C . . A . 41 SER N . . . 40 . N . . . . . 40 . CA . . . . . 40 . C . . . . . 41 . N . . rr_2ksj 1 120 . . 1 1 40 40 TYR N N . . 1 1 40 40 TYR CA C . . 1 1 40 40 TYR C C . . 1 1 41 41 SER N N . -51.0 -31.0 . . . A . 40 TYR N . . A . 40 TYR CA . . A . 40 TYR C . . A . 41 SER N . . . 40 . N . . . . . 40 . CA . . . . . 40 . C . . . . . 41 . N . . rr_2ksj 1 121 . . 1 1 40 40 TYR C C . . 1 1 41 41 SER N N . . 1 1 41 41 SER CA C . . 1 1 41 41 SER C C . -72.0 -52.0 . . . A . 40 TYR C . . A . 41 SER N . . A . 41 SER CA . . A . 41 SER C . . . 40 . C . . . . . 41 . N . . . . . 41 . CA . . . . . 41 . C . . rr_2ksj 1 122 . . 1 1 40 40 TYR C C . . 1 1 41 41 SER N N . . 1 1 41 41 SER CA C . . 1 1 41 41 SER C C . -72.0 -52.0 . . . A . 40 TYR C . . A . 41 SER N . . A . 41 SER CA . . A . 41 SER C . . . 40 . C . . . . . 41 . N . . . . . 41 . CA . . . . . 41 . C . . rr_2ksj 1 123 . . 1 1 41 41 SER N N . . 1 1 41 41 SER CA C . . 1 1 41 41 SER C C . . 1 1 42 42 MET N N . -51.0 -31.0 . . . A . 41 SER N . . A . 41 SER CA . . A . 41 SER C . . A . 42 MET N . . . 41 . N . . . . . 41 . CA . . . . . 41 . C . . . . . 42 . N . . rr_2ksj 1 124 . . 1 1 41 41 SER N N . . 1 1 41 41 SER CA C . . 1 1 41 41 SER C C . . 1 1 42 42 MET N N . -51.0 -31.0 . . . A . 41 SER N . . A . 41 SER CA . . A . 41 SER C . . A . 42 MET N . . . 41 . N . . . . . 41 . CA . . . . . 41 . C . . . . . 42 . N . . rr_2ksj 1 125 . . 1 1 41 41 SER C C . . 1 1 42 42 MET N N . . 1 1 42 42 MET CA C . . 1 1 42 42 MET C C . -72.0 -52.0 . . . A . 41 SER C . . A . 42 MET N . . A . 42 MET CA . . A . 42 MET C . . . 41 . C . . . . . 42 . N . . . . . 42 . CA . . . . . 42 . C . . rr_2ksj 1 126 . . 1 1 41 41 SER C C . . 1 1 42 42 MET N N . . 1 1 42 42 MET CA C . . 1 1 42 42 MET C C . -72.0 -52.0 . . . A . 41 SER C . . A . 42 MET N . . A . 42 MET CA . . A . 42 MET C . . . 41 . C . . . . . 42 . N . . . . . 42 . CA . . . . . 42 . C . . rr_2ksj 1 127 . . 1 1 42 42 MET N N . . 1 1 42 42 MET CA C . . 1 1 42 42 MET C C . . 1 1 43 43 LEU N N . -51.0 -31.0 . . . A . 42 MET N . . A . 42 MET CA . . A . 42 MET C . . A . 43 LEU N . . . 42 . N . . . . . 42 . CA . . . . . 42 . C . . . . . 43 . N . . rr_2ksj 1 128 . . 1 1 42 42 MET N N . . 1 1 42 42 MET CA C . . 1 1 42 42 MET C C . . 1 1 43 43 LEU N N . -51.0 -31.0 . . . A . 42 MET N . . A . 42 MET CA . . A . 42 MET C . . A . 43 LEU N . . . 42 . N . . . . . 42 . CA . . . . . 42 . C . . . . . 43 . N . . rr_2ksj 1 129 . . 1 1 42 42 MET C C . . 1 1 43 43 LEU N N . . 1 1 43 43 LEU CA C . . 1 1 43 43 LEU C C . -72.0 -52.0 . . . A . 42 MET C . . A . 43 LEU N . . A . 43 LEU CA . . A . 43 LEU C . . . 42 . C . . . . . 43 . N . . . . . 43 . CA . . . . . 43 . C . . rr_2ksj 1 130 . . 1 1 42 42 MET C C . . 1 1 43 43 LEU N N . . 1 1 43 43 LEU CA C . . 1 1 43 43 LEU C C . -72.0 -52.0 . . . A . 42 MET C . . A . 43 LEU N . . A . 43 LEU CA . . A . 43 LEU C . . . 42 . C . . . . . 43 . N . . . . . 43 . CA . . . . . 43 . C . . rr_2ksj 1 131 . . 1 1 43 43 LEU N N . . 1 1 43 43 LEU CA C . . 1 1 43 43 LEU C C . . 1 1 44 44 ARG N N . -51.0 -31.0 . . . A . 43 LEU N . . A . 43 LEU CA . . A . 43 LEU C . . A . 44 ARG N . . . 43 . N . . . . . 43 . CA . . . . . 43 . C . . . . . 44 . N . . rr_2ksj 1 132 . . 1 1 43 43 LEU N N . . 1 1 43 43 LEU CA C . . 1 1 43 43 LEU C C . . 1 1 44 44 ARG N N . -51.0 -31.0 . . . A . 43 LEU N . . A . 43 LEU CA . . A . 43 LEU C . . A . 44 ARG N . . . 43 . N . . . . . 43 . CA . . . . . 43 . C . . . . . 44 . N . . rr_2ksj 1 133 . . 1 1 43 43 LEU C C . . 1 1 44 44 ARG N N . . 1 1 44 44 ARG CA C . . 1 1 44 44 ARG C C . -72.0 -52.0 . . . A . 43 LEU C . . A . 44 ARG N . . A . 44 ARG CA . . A . 44 ARG C . . . 43 . C . . . . . 44 . N . . . . . 44 . CA . . . . . 44 . C . . rr_2ksj 1 134 . . 1 1 43 43 LEU C C . . 1 1 44 44 ARG N N . . 1 1 44 44 ARG CA C . . 1 1 44 44 ARG C C . -72.0 -52.0 . . . A . 43 LEU C . . A . 44 ARG N . . A . 44 ARG CA . . A . 44 ARG C . . . 43 . C . . . . . 44 . N . . . . . 44 . CA . . . . . 44 . C . . rr_2ksj 1 135 . . 1 1 44 44 ARG N N . . 1 1 44 44 ARG CA C . . 1 1 44 44 ARG C C . . 1 1 45 45 LYS N N . -51.0 -31.0 . . . A . 44 ARG N . . A . 44 ARG CA . . A . 44 ARG C . . A . 45 LYS N . . . 44 . N . . . . . 44 . CA . . . . . 44 . C . . . . . 45 . N . . rr_2ksj 1 136 . . 1 1 44 44 ARG N N . . 1 1 44 44 ARG CA C . . 1 1 44 44 ARG C C . . 1 1 45 45 LYS N N . -51.0 -31.0 . . . A . 44 ARG N . . A . 44 ARG CA . . A . 44 ARG C . . A . 45 LYS N . . . 44 . N . . . . . 44 . CA . . . . . 44 . C . . . . . 45 . N . . rr_2ksj 1 stop_ loop_ _TA_constraint_comment_org.ID _TA_constraint_comment_org.Comment_text _TA_constraint_comment_org.Comment_begin_line _TA_constraint_comment_org.Comment_begin_column _TA_constraint_comment_org.Comment_end_line _TA_constraint_comment_org.Comment_end_column _TA_constraint_comment_org.Entry_ID _TA_constraint_comment_org.Torsion_angle_constraint_list_ID 1 ; ! TALOS PHI PSI dihedral angles for Pf1 ! numbers specify: energy constant, angle, angle deviation, exponent ! (PHI)i = (C)i-1 (N)i (CA)i (C)i (PSI)i = (N)i (CA)i (C)i (N)i+1 !GLY 1 TALOS score = 0 assign (resid 0 and name C ) ( resid 1 and name N ) (resid 1 and name CA ) ( resid 1 and name C ) 1.0 9999.00 0.0 2 assign (resid 1 and name N ) ( resid 1 and name CA ) (resid 1 and name C ) ( resid 2 and name N ) 1.0 9999.00 -2.0 2 !VAL 2 TALOS score = 8 assign (resid 1 and name C ) ( resid 2 and name N ) (resid 2 and name CA ) ( resid 2 and name C ) 1.0 -115.04 25.0 2 assign (resid 2 and name N ) ( resid 2 and name CA ) (resid 2 and name C ) ( resid 3 and name N ) 1.0 140.32 10.0 2 !ILE 3 TALOS score = 7 assign (resid 2 and name C ) ( resid 3 and name N ) (resid 3 and name CA ) ( resid 3 and name C ) 1.0 -132.32 20.0 2 assign (resid 3 and name N ) ( resid 3 and name CA ) (resid 3 and name C ) ( resid 4 and name N ) 1.0 143.51 20.0 2 !ASP 4 TALOS score = 6 assign (resid 3 and name C ) ( resid 4 and name N ) (resid 4 and name CA ) ( resid 4 and name C ) 1.0 -115.95 40.0 2 assign (resid 4 and name N ) ( resid 4 and name CA ) (resid 4 and name C ) ( resid 5 and name N ) 1.0 137.99 10.0 2 !THR 5 TALOS score = 10 ; 1 1 26 30 rr_2ksj 1 2 '!SER 6 TALOS score = 10' 31 1 31 30 rr_2ksj 1 3 '!ALA 7 TALOS score = 10' 36 1 36 30 rr_2ksj 1 4 '!VAL 8 TALOS score = 10' 41 1 41 30 rr_2ksj 1 5 '!GLU 9 TALOS score = 10' 46 1 46 30 rr_2ksj 1 6 '!SER 10 TALOS score = 10' 51 1 51 30 rr_2ksj 1 7 '!ALA 11 TALOS score = 10' 56 1 56 30 rr_2ksj 1 8 '!ILE 12 TALOS score = 10' 61 1 61 30 rr_2ksj 1 9 '!THR 13 TALOS score = 10' 66 1 66 30 rr_2ksj 1 10 ; !ASP 14 TALOS score = 5 assign (resid 13 and name C ) ( resid 14 and name N ) (resid 14 and name CA ) ( resid 14 and name C ) 1.0 -109.02 55.0 2 assign (resid 14 and name N ) ( resid 14 and name CA ) (resid 14 and name C ) ( resid 15 and name N ) 1.0 139.45 20.0 2 !GLY 15 TALOS score = 6 assign (resid 14 and name C ) ( resid 15 and name N ) (resid 15 and name CA ) ( resid 15 and name C ) 1.0 83.38 10.0 2 assign (resid 15 and name N ) ( resid 15 and name CA ) (resid 15 and name C ) ( resid 16 and name N ) 1.0 2.31 30.0 2 !GLN 16 TALOS score = 6 assign (resid 15 and name C ) ( resid 16 and name N ) (resid 16 and name CA ) ( resid 16 and name C ) 1.0 -99.67 20.0 2 assign (resid 16 and name N ) ( resid 16 and name CA ) (resid 16 and name C ) ( resid 17 and name N ) 1.0 168.84 25.0 2 !GLY 17 TALOS score = 6 assign (resid 16 and name C ) ( resid 17 and name N ) (resid 17 and name CA ) ( resid 17 and name C ) 1.0 94.19 25.0 2 assign (resid 17 and name N ) ( resid 17 and name CA ) (resid 17 and name C ) ( resid 18 and name N ) 1.0 16.06 25.0 2 !ASP 18 TALOS score = 6 assign (resid 17 and name C ) ( resid 18 and name N ) (resid 18 and name CA ) ( resid 18 and name C ) 1.0 -68.93 10.0 2 assign (resid 18 and name N ) ( resid 18 and name CA ) (resid 18 and name C ) ( resid 19 and name N ) 1.0 -35.11 10.0 2 !MET 19 TALOS score = 10 assign (resid 18 and name C ) ( resid 19 and name N ) (resid 19 and name CA ) ( resid 19 and name C ) 1.0 -62.00 10.0 2 assign (resid 19 and name N ) ( resid 19 and name CA ) (resid 19 and name C ) ( resid 20 and name N ) 1.0 -41.00 10.0 2 !LYS 20 TALOS score = 10 ; 72 1 103 30 rr_2ksj 1 11 '!ALA 21 TALOS score = 10' 108 1 108 30 rr_2ksj 1 12 '!ILE 22 TALOS score = 10' 113 1 113 30 rr_2ksj 1 13 '!GLY 23 TALOS score = 10' 118 1 118 30 rr_2ksj 1 14 '!GLY 24 TALOS score = 10' 123 1 123 30 rr_2ksj 1 15 '!TYR 25 TALOS score = 10' 128 1 128 30 rr_2ksj 1 16 '!ILE 26 TALOS score = 10' 133 1 133 30 rr_2ksj 1 17 '!VAL 27 TALOS score = 10' 138 1 138 30 rr_2ksj 1 18 '!GLY 28 TALOS score = 10' 143 1 143 30 rr_2ksj 1 19 '!ALA 29 TALOS score = 10' 148 1 148 30 rr_2ksj 1 20 '!LEU 30 TALOS score = 10' 153 1 153 30 rr_2ksj 1 21 '!VAL 31 TALOS score = 10' 158 1 158 30 rr_2ksj 1 22 '!ILE 32 TALOS score = 10' 163 1 163 30 rr_2ksj 1 23 '!LEU 33 TALOS score = 10' 168 1 168 30 rr_2ksj 1 24 '!ALA 34 TALOS score = 10' 173 1 173 30 rr_2ksj 1 25 '!VAL 35 TALOS score = 10' 178 1 178 30 rr_2ksj 1 26 '!ALA 36 TALOS score = 10' 183 1 183 30 rr_2ksj 1 27 '!GLY 37 TALOS score = 10' 188 1 188 30 rr_2ksj 1 28 '!LEU 38 TALOS score = 10' 193 1 193 30 rr_2ksj 1 29 '!ILE 39 TALOS score = 10' 198 1 198 30 rr_2ksj 1 30 '!TYR 40 TALOS score = 10' 203 1 203 30 rr_2ksj 1 31 '!SER 41 TALOS score = 10' 208 1 208 30 rr_2ksj 1 32 '!MET 42 TALOS score = 10' 213 1 213 30 rr_2ksj 1 33 '!LEU 43 TALOS score = 10' 218 1 218 30 rr_2ksj 1 34 '!ARG 44 TALOS score = 10' 223 1 223 30 rr_2ksj 1 35 ; !LYS 45 TALOS score = 10 assign (resid 44 and name C ) ( resid 45 and name N ) (resid 45 and name CA ) ( resid 45 and name C ) 1.0 -62.00 10.0 2 assign (resid 45 and name N ) ( resid 45 and name CA ) (resid 45 and name C ) ( resid 46 and name N ) 1.0 -41.00 10.0 2 !ALA 46 TALOS score = 0 assign (resid 45 and name C ) ( resid 46 and name N ) (resid 46 and name CA ) ( resid 46 and name C ) 1.0 9999.00 10.0 2 assign (resid 46 and name N ) ( resid 46 and name CA ) (resid 46 and name C ) ( resid 47 and name N ) 1.0 9999.00 10.0 2 ! TALOS PHI PSI dihedral angles for Pf1 ! numbers specify: energy constant, angle, angle deviation, exponent ! (PHI)i = (C)i-1 (N)i (CA)i (C)i (PSI)i = (N)i (CA)i (C)i (N)i+1 !GLY 1 TALOS score = 0 assign (resid 0 and name C ) ( resid 1 and name N ) (resid 1 and name CA ) ( resid 1 and name C ) 1.0 9999.00 0.0 2 assign (resid 1 and name N ) ( resid 1 and name CA ) (resid 1 and name C ) ( resid 2 and name N ) 1.0 9999.00 -2.0 2 !VAL 2 TALOS score = 8 assign (resid 1 and name C ) ( resid 2 and name N ) (resid 2 and name CA ) ( resid 2 and name C ) 1.0 -115.04 25.0 2 assign (resid 2 and name N ) ( resid 2 and name CA ) (resid 2 and name C ) ( resid 3 and name N ) 1.0 140.32 10.0 2 !ILE 3 TALOS score = 7 assign (resid 2 and name C ) ( resid 3 and name N ) (resid 3 and name CA ) ( resid 3 and name C ) 1.0 -132.32 20.0 2 assign (resid 3 and name N ) ( resid 3 and name CA ) (resid 3 and name C ) ( resid 4 and name N ) 1.0 143.51 20.0 2 !ASP 4 TALOS score = 6 assign (resid 3 and name C ) ( resid 4 and name N ) (resid 4 and name CA ) ( resid 4 and name C ) 1.0 -115.95 40.0 2 assign (resid 4 and name N ) ( resid 4 and name CA ) (resid 4 and name C ) ( resid 5 and name N ) 1.0 137.99 10.0 2 !THR 5 TALOS score = 10 ; 229 1 264 30 rr_2ksj 1 36 '!SER 6 TALOS score = 10' 269 1 269 30 rr_2ksj 1 37 '!ALA 7 TALOS score = 10' 274 1 274 30 rr_2ksj 1 38 '!VAL 8 TALOS score = 10' 279 1 279 30 rr_2ksj 1 39 '!GLU 9 TALOS score = 10' 284 1 284 30 rr_2ksj 1 40 '!SER 10 TALOS score = 10' 289 1 289 30 rr_2ksj 1 41 '!ALA 11 TALOS score = 10' 294 1 294 30 rr_2ksj 1 42 '!ILE 12 TALOS score = 10' 299 1 299 30 rr_2ksj 1 43 '!THR 13 TALOS score = 10' 304 1 304 30 rr_2ksj 1 44 ; !ASP 14 TALOS score = 5 assign (resid 13 and name C ) ( resid 14 and name N ) (resid 14 and name CA ) ( resid 14 and name C ) 1.0 -109.02 55.0 2 assign (resid 14 and name N ) ( resid 14 and name CA ) (resid 14 and name C ) ( resid 15 and name N ) 1.0 139.45 20.0 2 !GLY 15 TALOS score = 6 assign (resid 14 and name C ) ( resid 15 and name N ) (resid 15 and name CA ) ( resid 15 and name C ) 1.0 83.38 10.0 2 assign (resid 15 and name N ) ( resid 15 and name CA ) (resid 15 and name C ) ( resid 16 and name N ) 1.0 2.31 30.0 2 !GLN 16 TALOS score = 6 assign (resid 15 and name C ) ( resid 16 and name N ) (resid 16 and name CA ) ( resid 16 and name C ) 1.0 -99.67 20.0 2 assign (resid 16 and name N ) ( resid 16 and name CA ) (resid 16 and name C ) ( resid 17 and name N ) 1.0 168.84 25.0 2 !GLY 17 TALOS score = 6 assign (resid 16 and name C ) ( resid 17 and name N ) (resid 17 and name CA ) ( resid 17 and name C ) 1.0 94.19 25.0 2 assign (resid 17 and name N ) ( resid 17 and name CA ) (resid 17 and name C ) ( resid 18 and name N ) 1.0 16.06 25.0 2 !ASP 18 TALOS score = 6 assign (resid 17 and name C ) ( resid 18 and name N ) (resid 18 and name CA ) ( resid 18 and name C ) 1.0 -68.93 10.0 2 assign (resid 18 and name N ) ( resid 18 and name CA ) (resid 18 and name C ) ( resid 19 and name N ) 1.0 -35.11 10.0 2 !MET 19 TALOS score = 10 assign (resid 18 and name C ) ( resid 19 and name N ) (resid 19 and name CA ) ( resid 19 and name C ) 1.0 -62.00 10.0 2 assign (resid 19 and name N ) ( resid 19 and name CA ) (resid 19 and name C ) ( resid 20 and name N ) 1.0 -41.00 10.0 2 !LYS 20 TALOS score = 10 ; 310 1 341 30 rr_2ksj 1 45 '!ALA 21 TALOS score = 10' 346 1 346 30 rr_2ksj 1 46 '!ILE 22 TALOS score = 10' 351 1 351 30 rr_2ksj 1 47 '!GLY 23 TALOS score = 10' 356 1 356 30 rr_2ksj 1 48 '!GLY 24 TALOS score = 10' 361 1 361 30 rr_2ksj 1 49 '!TYR 25 TALOS score = 10' 366 1 366 30 rr_2ksj 1 50 '!ILE 26 TALOS score = 10' 371 1 371 30 rr_2ksj 1 51 '!VAL 27 TALOS score = 10' 376 1 376 30 rr_2ksj 1 52 '!GLY 28 TALOS score = 10' 381 1 381 30 rr_2ksj 1 53 '!ALA 29 TALOS score = 10' 386 1 386 30 rr_2ksj 1 54 '!LEU 30 TALOS score = 10' 391 1 391 30 rr_2ksj 1 55 '!VAL 31 TALOS score = 10' 396 1 396 30 rr_2ksj 1 56 '!ILE 32 TALOS score = 10' 401 1 401 30 rr_2ksj 1 57 '!LEU 33 TALOS score = 10' 406 1 406 30 rr_2ksj 1 58 '!ALA 34 TALOS score = 10' 411 1 411 30 rr_2ksj 1 59 '!VAL 35 TALOS score = 10' 416 1 416 30 rr_2ksj 1 60 '!ALA 36 TALOS score = 10' 421 1 421 30 rr_2ksj 1 61 '!GLY 37 TALOS score = 10' 426 1 426 30 rr_2ksj 1 62 '!LEU 38 TALOS score = 10' 431 1 431 30 rr_2ksj 1 63 '!ILE 39 TALOS score = 10' 436 1 436 30 rr_2ksj 1 64 '!TYR 40 TALOS score = 10' 441 1 441 30 rr_2ksj 1 65 '!SER 41 TALOS score = 10' 446 1 446 30 rr_2ksj 1 66 '!MET 42 TALOS score = 10' 451 1 451 30 rr_2ksj 1 67 '!LEU 43 TALOS score = 10' 456 1 456 30 rr_2ksj 1 68 '!ARG 44 TALOS score = 10' 461 1 461 30 rr_2ksj 1 69 ; !LYS 45 TALOS score = 10 assign (resid 44 and name C ) ( resid 45 and name N ) (resid 45 and name CA ) ( resid 45 and name C ) 1.0 -62.00 10.0 2 assign (resid 45 and name N ) ( resid 45 and name CA ) (resid 45 and name C ) ( resid 46 and name N ) 1.0 -41.00 10.0 2 !ALA 46 TALOS score = 0 assign (resid 45 and name C ) ( resid 46 and name N ) (resid 46 and name CA ) ( resid 46 and name C ) 1.0 9999.00 10.0 2 assign (resid 46 and name N ) ( resid 46 and name CA ) (resid 46 and name C ) ( resid 47 and name N ) 1.0 9999.00 10.0 2 ; 467 1 476 86 rr_2ksj 1 stop_ save_ save_CNS/XPLOR_dipolar_coupling_2 _RDC_constraint_list.Sf_category RDC_constraints _RDC_constraint_list.Sf_framecode CNS/XPLOR_dipolar_coupling_2 _RDC_constraint_list.Entry_ID rr_2ksj _RDC_constraint_list.ID 1 _RDC_constraint_list.Details 'Generated by Wattos' _RDC_constraint_list.Constraint_file_ID 1 _RDC_constraint_list.Block_ID 2 loop_ _RDC_constraint_software.Software_ID _RDC_constraint_software.Software_label _RDC_constraint_software.Method_ID _RDC_constraint_software.Method_label _RDC_constraint_software.Entry_ID _RDC_constraint_software.RDC_constraint_list_ID . . . . rr_2ksj 1 stop_ loop_ _RDC_constraint.ID _RDC_constraint.Assembly_atom_ID_1 _RDC_constraint.Entity_assembly_ID_1 _RDC_constraint.Entity_ID_1 _RDC_constraint.Comp_index_ID_1 _RDC_constraint.Seq_ID_1 _RDC_constraint.Comp_ID_1 _RDC_constraint.Atom_ID_1 _RDC_constraint.Atom_type_1 _RDC_constraint.Atom_isotope_number_1 _RDC_constraint.Resonance_ID_1 _RDC_constraint.Assembly_atom_ID_2 _RDC_constraint.Entity_assembly_ID_2 _RDC_constraint.Entity_ID_2 _RDC_constraint.Comp_index_ID_2 _RDC_constraint.Seq_ID_2 _RDC_constraint.Comp_ID_2 _RDC_constraint.Atom_ID_2 _RDC_constraint.Atom_type_2 _RDC_constraint.Atom_isotope_number_2 _RDC_constraint.Resonance_ID_2 _RDC_constraint.RDC_val _RDC_constraint.RDC_lower_bound _RDC_constraint.RDC_upper_bound _RDC_constraint.RDC_val_err _RDC_constraint.RDC_val_scale_factor _RDC_constraint.RDC_bond_length _RDC_constraint.Source_experiment_ID _RDC_constraint.PDB_record_ID_1 _RDC_constraint.PDB_model_num_1 _RDC_constraint.PDB_strand_ID_1 _RDC_constraint.PDB_ins_code_1 _RDC_constraint.PDB_residue_no_1 _RDC_constraint.PDB_residue_name_1 _RDC_constraint.PDB_atom_name_1 _RDC_constraint.PDB_record_ID_2 _RDC_constraint.PDB_model_num_2 _RDC_constraint.PDB_strand_ID_2 _RDC_constraint.PDB_ins_code_2 _RDC_constraint.PDB_residue_no_2 _RDC_constraint.PDB_residue_name_2 _RDC_constraint.PDB_atom_name_2 _RDC_constraint.Auth_entity_assembly_ID_1 _RDC_constraint.Auth_asym_ID_1 _RDC_constraint.Auth_chain_ID_1 _RDC_constraint.Auth_seq_ID_1 _RDC_constraint.Auth_comp_ID_1 _RDC_constraint.Auth_atom_ID_1 _RDC_constraint.Auth_alt_ID_1 _RDC_constraint.Auth_atom_name_1 _RDC_constraint.Auth_entity_assembly_ID_2 _RDC_constraint.Auth_asym_ID_2 _RDC_constraint.Auth_chain_ID_2 _RDC_constraint.Auth_seq_ID_2 _RDC_constraint.Auth_comp_ID_2 _RDC_constraint.Auth_atom_ID_2 _RDC_constraint.Auth_alt_ID_2 _RDC_constraint.Auth_atom_name_2 _RDC_constraint.Entry_ID _RDC_constraint.RDC_constraint_list_ID 1 . 1 1 3 3 ILE N N . . . 1 1 3 3 ILE H H . . -2.380 . . . . . . . . A . 3 ILE N . . A . 3 ILE H . . . 3 . N . . . . . 3 . HN . . rr_2ksj 1 2 . 1 1 4 4 ASP N N . . . 1 1 4 4 ASP H H . . -2.960 . . . . . . . . A . 4 ASP N . . A . 4 ASP H . . . 4 . N . . . . . 4 . HN . . rr_2ksj 1 3 . 1 1 5 5 THR N N . . . 1 1 5 5 THR H H . . 1.530 . . . . . . . . A . 5 THR N . . A . 5 THR H . . . 5 . N . . . . . 5 . HN . . rr_2ksj 1 4 . 1 1 6 6 SER N N . . . 1 1 6 6 SER H H . . 3.450 . . . . . . . . A . 6 SER N . . A . 6 SER H . . . 6 . N . . . . . 6 . HN . . rr_2ksj 1 5 . 1 1 7 7 ALA N N . . . 1 1 7 7 ALA H H . . 3.560 . . . . . . . . A . 7 ALA N . . A . 7 ALA H . . . 7 . N . . . . . 7 . HN . . rr_2ksj 1 6 . 1 1 8 8 VAL N N . . . 1 1 8 8 VAL H H . . 2.360 . . . . . . . . A . 8 VAL N . . A . 8 VAL H . . . 8 . N . . . . . 8 . HN . . rr_2ksj 1 7 . 1 1 9 9 GLU N N . . . 1 1 9 9 GLU H H . . 2.250 . . . . . . . . A . 9 GLU N . . A . 9 GLU H . . . 9 . N . . . . . 9 . HN . . rr_2ksj 1 8 . 1 1 10 10 SER N N . . . 1 1 10 10 SER H H . . 3.690 . . . . . . . . A . 10 SER N . . A . 10 SER H . . . 10 . N . . . . . 10 . HN . . rr_2ksj 1 9 . 1 1 11 11 ALA N N . . . 1 1 11 11 ALA H H . . 2.850 . . . . . . . . A . 11 ALA N . . A . 11 ALA H . . . 11 . N . . . . . 11 . HN . . rr_2ksj 1 10 . 1 1 12 12 ILE N N . . . 1 1 12 12 ILE H H . . 2.880 . . . . . . . . A . 12 ILE N . . A . 12 ILE H . . . 12 . N . . . . . 12 . HN . . rr_2ksj 1 11 . 1 1 13 13 THR N N . . . 1 1 13 13 THR H H . . 2.560 . . . . . . . . A . 13 THR N . . A . 13 THR H . . . 13 . N . . . . . 13 . HN . . rr_2ksj 1 12 . 1 1 14 14 ASP N N . . . 1 1 14 14 ASP H H . . 0.260 . . . . . . . . A . 14 ASP N . . A . 14 ASP H . . . 14 . N . . . . . 14 . HN . . rr_2ksj 1 13 . 1 1 15 15 GLY N N . . . 1 1 15 15 GLY H H . . 0.850 . . . . . . . . A . 15 GLY N . . A . 15 GLY H . . . 15 . N . . . . . 15 . HN . . rr_2ksj 1 14 . 1 1 16 16 GLN N N . . . 1 1 16 16 GLN H H . . -0.100 . . . . . . . . A . 16 GLN N . . A . 16 GLN H . . . 16 . N . . . . . 16 . HN . . rr_2ksj 1 15 . 1 1 17 17 GLY N N . . . 1 1 17 17 GLY H H . . -3.520 . . . . . . . . A . 17 GLY N . . A . 17 GLY H . . . 17 . N . . . . . 17 . HN . . rr_2ksj 1 16 . 1 1 18 18 ASP N N . . . 1 1 18 18 ASP H H . . -1.420 . . . . . . . . A . 18 ASP N . . A . 18 ASP H . . . 18 . N . . . . . 18 . HN . . rr_2ksj 1 17 . 1 1 19 19 MET N N . . . 1 1 19 19 MET H H . . -6.850 . . . . . . . . A . 19 MET N . . A . 19 MET H . . . 19 . N . . . . . 19 . HN . . rr_2ksj 1 18 . 1 1 20 20 LYS N N . . . 1 1 20 20 LYS H H . . -11.970 . . . . . . . . A . 20 LYS N . . A . 20 LYS H . . . 20 . N . . . . . 20 . HN . . rr_2ksj 1 19 . 1 1 21 21 ALA N N . . . 1 1 21 21 ALA H H . . -16.000 . . . . . . . . A . 21 ALA N . . A . 21 ALA H . . . 21 . N . . . . . 21 . HN . . rr_2ksj 1 20 . 1 1 22 22 ILE N N . . . 1 1 22 22 ILE H H . . -15.760 . . . . . . . . A . 22 ILE N . . A . 22 ILE H . . . 22 . N . . . . . 22 . HN . . rr_2ksj 1 21 . 1 1 23 23 GLY N N . . . 1 1 23 23 GLY H H . . -11.330 . . . . . . . . A . 23 GLY N . . A . 23 GLY H . . . 23 . N . . . . . 23 . HN . . rr_2ksj 1 22 . 1 1 24 24 GLY N N . . . 1 1 24 24 GLY H H . . -13.080 . . . . . . . . A . 24 GLY N . . A . 24 GLY H . . . 24 . N . . . . . 24 . HN . . rr_2ksj 1 23 . 1 1 25 25 TYR N N . . . 1 1 25 25 TYR H H . . -22.150 . . . . . . . . A . 25 TYR N . . A . 25 TYR H . . . 25 . N . . . . . 25 . HN . . rr_2ksj 1 24 . 1 1 26 26 ILE N N . . . 1 1 26 26 ILE H H . . -15.360 . . . . . . . . A . 26 ILE N . . A . 26 ILE H . . . 26 . N . . . . . 26 . HN . . rr_2ksj 1 25 . 1 1 27 27 VAL N N . . . 1 1 27 27 VAL H H . . -10.750 . . . . . . . . A . 27 VAL N . . A . 27 VAL H . . . 27 . N . . . . . 27 . HN . . rr_2ksj 1 26 . 1 1 28 28 GLY N N . . . 1 1 28 28 GLY H H . . -18.460 . . . . . . . . A . 28 GLY N . . A . 28 GLY H . . . 28 . N . . . . . 28 . HN . . rr_2ksj 1 27 . 1 1 29 29 ALA N N . . . 1 1 29 29 ALA H H . . -22.020 . . . . . . . . A . 29 ALA N . . A . 29 ALA H . . . 29 . N . . . . . 29 . HN . . rr_2ksj 1 28 . 1 1 30 30 LEU N N . . . 1 1 30 30 LEU H H . . -12.340 . . . . . . . . A . 30 LEU N . . A . 30 LEU H . . . 30 . N . . . . . 30 . HN . . rr_2ksj 1 29 . 1 1 31 31 VAL N N . . . 1 1 31 31 VAL H H . . -13.010 . . . . . . . . A . 31 VAL N . . A . 31 VAL H . . . 31 . N . . . . . 31 . HN . . rr_2ksj 1 30 . 1 1 32 32 ILE N N . . . 1 1 32 32 ILE H H . . -21.840 . . . . . . . . A . 32 ILE N . . A . 32 ILE H . . . 32 . N . . . . . 32 . HN . . rr_2ksj 1 31 . 1 1 33 33 LEU N N . . . 1 1 33 33 LEU H H . . -20.290 . . . . . . . . A . 33 LEU N . . A . 33 LEU H . . . 33 . N . . . . . 33 . HN . . rr_2ksj 1 32 . 1 1 34 34 ALA N N . . . 1 1 34 34 ALA H H . . -11.350 . . . . . . . . A . 34 ALA N . . A . 34 ALA H . . . 34 . N . . . . . 34 . HN . . rr_2ksj 1 33 . 1 1 35 35 VAL N N . . . 1 1 35 35 VAL H H . . -14.910 . . . . . . . . A . 35 VAL N . . A . 35 VAL H . . . 35 . N . . . . . 35 . HN . . rr_2ksj 1 34 . 1 1 36 36 ALA N N . . . 1 1 36 36 ALA H H . . -22.360 . . . . . . . . A . 36 ALA N . . A . 36 ALA H . . . 36 . N . . . . . 36 . HN . . rr_2ksj 1 35 . 1 1 37 37 GLY N N . . . 1 1 37 37 GLY H H . . -15.740 . . . . . . . . A . 37 GLY N . . A . 37 GLY H . . . 37 . N . . . . . 37 . HN . . rr_2ksj 1 36 . 1 1 38 38 LEU N N . . . 1 1 38 38 LEU H H . . -8.960 . . . . . . . . A . 38 LEU N . . A . 38 LEU H . . . 38 . N . . . . . 38 . HN . . rr_2ksj 1 37 . 1 1 39 39 ILE N N . . . 1 1 39 39 ILE H H . . -17.780 . . . . . . . . A . 39 ILE N . . A . 39 ILE H . . . 39 . N . . . . . 39 . HN . . rr_2ksj 1 38 . 1 1 40 40 TYR N N . . . 1 1 40 40 TYR H H . . -20.820 . . . . . . . . A . 40 TYR N . . A . 40 TYR H . . . 40 . N . . . . . 40 . HN . . rr_2ksj 1 39 . 1 1 41 41 SER N N . . . 1 1 41 41 SER H H . . -10.650 . . . . . . . . A . 41 SER N . . A . 41 SER H . . . 41 . N . . . . . 41 . HN . . rr_2ksj 1 40 . 1 1 42 42 MET N N . . . 1 1 42 42 MET H H . . -9.040 . . . . . . . . A . 42 MET N . . A . 42 MET H . . . 42 . N . . . . . 42 . HN . . rr_2ksj 1 41 . 1 1 43 43 LEU N N . . . 1 1 43 43 LEU H H . . -21.030 . . . . . . . . A . 43 LEU N . . A . 43 LEU H . . . 43 . N . . . . . 43 . HN . . rr_2ksj 1 42 . 1 1 44 44 ARG N N . . . 1 1 44 44 ARG H H . . -7.300 . . . . . . . . A . 44 ARG N . . A . 44 ARG H . . . 44 . N . . . . . 44 . HN . . rr_2ksj 1 43 . 1 1 45 45 LYS N N . . . 1 1 45 45 LYS H H . . 2.530 . . . . . . . . A . 45 LYS N . . A . 45 LYS H . . . 45 . N . . . . . 45 . HN . . rr_2ksj 1 44 . 1 1 2 2 VAL N N . . . 1 1 2 2 VAL H H . . 2.190 . . . . . . . . A . 2 VAL N . . A . 2 VAL H . . . 2 . N . . . . . 2 . HN . . rr_2ksj 1 45 . 1 1 3 3 ILE N N . . . 1 1 3 3 ILE H H . . 0.900 . . . . . . . . A . 3 ILE N . . A . 3 ILE H . . . 3 . N . . . . . 3 . HN . . rr_2ksj 1 46 . 1 1 4 4 ASP N N . . . 1 1 4 4 ASP H H . . 0.310 . . . . . . . . A . 4 ASP N . . A . 4 ASP H . . . 4 . N . . . . . 4 . HN . . rr_2ksj 1 47 . 1 1 5 5 THR N N . . . 1 1 5 5 THR H H . . -2.460 . . . . . . . . A . 5 THR N . . A . 5 THR H . . . 5 . N . . . . . 5 . HN . . rr_2ksj 1 48 . 1 1 6 6 SER N N . . . 1 1 6 6 SER H H . . -3.680 . . . . . . . . A . 6 SER N . . A . 6 SER H . . . 6 . N . . . . . 6 . HN . . rr_2ksj 1 49 . 1 1 7 7 ALA N N . . . 1 1 7 7 ALA H H . . -2.090 . . . . . . . . A . 7 ALA N . . A . 7 ALA H . . . 7 . N . . . . . 7 . HN . . rr_2ksj 1 50 . 1 1 8 8 VAL N N . . . 1 1 8 8 VAL H H . . -3.490 . . . . . . . . A . 8 VAL N . . A . 8 VAL H . . . 8 . N . . . . . 8 . HN . . rr_2ksj 1 51 . 1 1 9 9 GLU N N . . . 1 1 9 9 GLU H H . . -4.000 . . . . . . . . A . 9 GLU N . . A . 9 GLU H . . . 9 . N . . . . . 9 . HN . . rr_2ksj 1 52 . 1 1 10 10 SER N N . . . 1 1 10 10 SER H H . . -2.880 . . . . . . . . A . 10 SER N . . A . 10 SER H . . . 10 . N . . . . . 10 . HN . . rr_2ksj 1 53 . 1 1 11 11 ALA N N . . . 1 1 11 11 ALA H H . . -1.840 . . . . . . . . A . 11 ALA N . . A . 11 ALA H . . . 11 . N . . . . . 11 . HN . . rr_2ksj 1 54 . 1 1 12 12 ILE N N . . . 1 1 12 12 ILE H H . . -3.510 . . . . . . . . A . 12 ILE N . . A . 12 ILE H . . . 12 . N . . . . . 12 . HN . . rr_2ksj 1 55 . 1 1 13 13 THR N N . . . 1 1 13 13 THR H H . . -2.520 . . . . . . . . A . 13 THR N . . A . 13 THR H . . . 13 . N . . . . . 13 . HN . . rr_2ksj 1 56 . 1 1 14 14 ASP N N . . . 1 1 14 14 ASP H H . . -0.050 . . . . . . . . A . 14 ASP N . . A . 14 ASP H . . . 14 . N . . . . . 14 . HN . . rr_2ksj 1 57 . 1 1 15 15 GLY N N . . . 1 1 15 15 GLY H H . . 0.120 . . . . . . . . A . 15 GLY N . . A . 15 GLY H . . . 15 . N . . . . . 15 . HN . . rr_2ksj 1 58 . 1 1 16 16 GLN N N . . . 1 1 16 16 GLN H H . . -0.790 . . . . . . . . A . 16 GLN N . . A . 16 GLN H . . . 16 . N . . . . . 16 . HN . . rr_2ksj 1 59 . 1 1 17 17 GLY N N . . . 1 1 17 17 GLY H H . . 0.750 . . . . . . . . A . 17 GLY N . . A . 17 GLY H . . . 17 . N . . . . . 17 . HN . . rr_2ksj 1 60 . 1 1 18 18 ASP N N . . . 1 1 18 18 ASP H H . . 4.190 . . . . . . . . A . 18 ASP N . . A . 18 ASP H . . . 18 . N . . . . . 18 . HN . . rr_2ksj 1 61 . 1 1 19 19 MET N N . . . 1 1 19 19 MET H H . . 4.130 . . . . . . . . A . 19 MET N . . A . 19 MET H . . . 19 . N . . . . . 19 . HN . . rr_2ksj 1 62 . 1 1 20 20 LYS N N . . . 1 1 20 20 LYS H H . . 0.800 . . . . . . . . A . 20 LYS N . . A . 20 LYS H . . . 20 . N . . . . . 20 . HN . . rr_2ksj 1 63 . 1 1 21 21 ALA N N . . . 1 1 21 21 ALA H H . . 11.160 . . . . . . . . A . 21 ALA N . . A . 21 ALA H . . . 21 . N . . . . . 21 . HN . . rr_2ksj 1 64 . 1 1 22 22 ILE N N . . . 1 1 22 22 ILE H H . . 10.770 . . . . . . . . A . 22 ILE N . . A . 22 ILE H . . . 22 . N . . . . . 22 . HN . . rr_2ksj 1 65 . 1 1 23 23 GLY N N . . . 1 1 23 23 GLY H H . . -0.200 . . . . . . . . A . 23 GLY N . . A . 23 GLY H . . . 23 . N . . . . . 23 . HN . . rr_2ksj 1 66 . 1 1 24 24 GLY N N . . . 1 1 24 24 GLY H H . . -0.760 . . . . . . . . A . 24 GLY N . . A . 24 GLY H . . . 24 . N . . . . . 24 . HN . . rr_2ksj 1 67 . 1 1 25 25 TYR N N . . . 1 1 25 25 TYR H H . . 14.800 . . . . . . . . A . 25 TYR N . . A . 25 TYR H . . . 25 . N . . . . . 25 . HN . . rr_2ksj 1 68 . 1 1 26 26 ILE N N . . . 1 1 26 26 ILE H H . . 3.930 . . . . . . . . A . 26 ILE N . . A . 26 ILE H . . . 26 . N . . . . . 26 . HN . . rr_2ksj 1 69 . 1 1 27 27 VAL N N . . . 1 1 27 27 VAL H H . . -4.050 . . . . . . . . A . 27 VAL N . . A . 27 VAL H . . . 27 . N . . . . . 27 . HN . . rr_2ksj 1 70 . 1 1 28 28 GLY N N . . . 1 1 28 28 GLY H H . . 5.220 . . . . . . . . A . 28 GLY N . . A . 28 GLY H . . . 28 . N . . . . . 28 . HN . . rr_2ksj 1 71 . 1 1 29 29 ALA N N . . . 1 1 29 29 ALA H H . . 13.270 . . . . . . . . A . 29 ALA N . . A . 29 ALA H . . . 29 . N . . . . . 29 . HN . . rr_2ksj 1 72 . 1 1 30 30 LEU N N . . . 1 1 30 30 LEU H H . . 1.270 . . . . . . . . A . 30 LEU N . . A . 30 LEU H . . . 30 . N . . . . . 30 . HN . . rr_2ksj 1 73 . 1 1 31 31 VAL N N . . . 1 1 31 31 VAL H H . . -1.920 . . . . . . . . A . 31 VAL N . . A . 31 VAL H . . . 31 . N . . . . . 31 . HN . . rr_2ksj 1 74 . 1 1 32 32 ILE N N . . . 1 1 32 32 ILE H H . . 11.600 . . . . . . . . A . 32 ILE N . . A . 32 ILE H . . . 32 . N . . . . . 32 . HN . . rr_2ksj 1 75 . 1 1 34 34 ALA N N . . . 1 1 34 34 ALA H H . . -2.370 . . . . . . . . A . 34 ALA N . . A . 34 ALA H . . . 34 . N . . . . . 34 . HN . . rr_2ksj 1 76 . 1 1 35 35 VAL N N . . . 1 1 35 35 VAL H H . . 1.630 . . . . . . . . A . 35 VAL N . . A . 35 VAL H . . . 35 . N . . . . . 35 . HN . . rr_2ksj 1 77 . 1 1 36 36 ALA N N . . . 1 1 36 36 ALA H H . . 12.200 . . . . . . . . A . 36 ALA N . . A . 36 ALA H . . . 36 . N . . . . . 36 . HN . . rr_2ksj 1 78 . 1 1 37 37 GLY N N . . . 1 1 37 37 GLY H H . . 4.840 . . . . . . . . A . 37 GLY N . . A . 37 GLY H . . . 37 . N . . . . . 37 . HN . . rr_2ksj 1 79 . 1 1 38 38 LEU N N . . . 1 1 38 38 LEU H H . . -5.350 . . . . . . . . A . 38 LEU N . . A . 38 LEU H . . . 38 . N . . . . . 38 . HN . . rr_2ksj 1 80 . 1 1 39 39 ILE N N . . . 1 1 39 39 ILE H H . . 4.980 . . . . . . . . A . 39 ILE N . . A . 39 ILE H . . . 39 . N . . . . . 39 . HN . . rr_2ksj 1 81 . 1 1 41 41 SER N N . . . 1 1 41 41 SER H H . . -4.190 . . . . . . . . A . 41 SER N . . A . 41 SER H . . . 41 . N . . . . . 41 . HN . . rr_2ksj 1 82 . 1 1 42 42 MET N N . . . 1 1 42 42 MET H H . . 10.230 . . . . . . . . A . 42 MET N . . A . 42 MET H . . . 42 . N . . . . . 42 . HN . . rr_2ksj 1 83 . 1 1 44 44 ARG N N . . . 1 1 44 44 ARG H H . . -5.530 . . . . . . . . A . 44 ARG N . . A . 44 ARG H . . . 44 . N . . . . . 44 . HN . . rr_2ksj 1 84 . 1 1 45 45 LYS N N . . . 1 1 45 45 LYS H H . . 4.150 . . . . . . . . A . 45 LYS N . . A . 45 LYS H . . . 45 . N . . . . . 45 . HN . . rr_2ksj 1 85 . 1 1 21 21 ALA N N . . . 1 1 21 21 ALA H H . . -0.672 . . . . . . . . A . 21 ALA N . . A . 21 ALA H . . . 21 . N . . . . . 21 . HN . . rr_2ksj 1 86 . 1 1 22 22 ILE N N . . . 1 1 22 22 ILE H H . . 1.165 . . . . . . . . A . 22 ILE N . . A . 22 ILE H . . . 22 . N . . . . . 22 . HN . . rr_2ksj 1 87 . 1 1 23 23 GLY N N . . . 1 1 23 23 GLY H H . . -4.082 . . . . . . . . A . 23 GLY N . . A . 23 GLY H . . . 23 . N . . . . . 23 . HN . . rr_2ksj 1 88 . 1 1 24 24 GLY N N . . . 1 1 24 24 GLY H H . . -4.947 . . . . . . . . A . 24 GLY N . . A . 24 GLY H . . . 24 . N . . . . . 24 . HN . . rr_2ksj 1 89 . 1 1 25 25 TYR N N . . . 1 1 25 25 TYR H H . . -3.386 . . . . . . . . A . 25 TYR N . . A . 25 TYR H . . . 25 . N . . . . . 25 . HN . . rr_2ksj 1 90 . 1 1 26 26 ILE N N . . . 1 1 26 26 ILE H H . . -3.652 . . . . . . . . A . 26 ILE N . . A . 26 ILE H . . . 26 . N . . . . . 26 . HN . . rr_2ksj 1 91 . 1 1 27 27 VAL N N . . . 1 1 27 27 VAL H H . . -7.033 . . . . . . . . A . 27 VAL N . . A . 27 VAL H . . . 27 . N . . . . . 27 . HN . . rr_2ksj 1 92 . 1 1 28 28 GLY N N . . . 1 1 28 28 GLY H H . . -4.947 . . . . . . . . A . 28 GLY N . . A . 28 GLY H . . . 28 . N . . . . . 28 . HN . . rr_2ksj 1 93 . 1 1 29 29 ALA N N . . . 1 1 29 29 ALA H H . . -2.031 . . . . . . . . A . 29 ALA N . . A . 29 ALA H . . . 29 . N . . . . . 29 . HN . . rr_2ksj 1 94 . 1 1 30 30 LEU N N . . . 1 1 30 30 LEU H H . . -5.188 . . . . . . . . A . 30 LEU N . . A . 30 LEU H . . . 30 . N . . . . . 30 . HN . . rr_2ksj 1 95 . 1 1 31 31 VAL N N . . . 1 1 31 31 VAL H H . . -6.950 . . . . . . . . A . 31 VAL N . . A . 31 VAL H . . . 31 . N . . . . . 31 . HN . . rr_2ksj 1 96 . 1 1 32 32 ILE N N . . . 1 1 32 32 ILE H H . . -3.386 . . . . . . . . A . 32 ILE N . . A . 32 ILE H . . . 32 . N . . . . . 32 . HN . . rr_2ksj 1 97 . 1 1 33 33 LEU N N . . . 1 1 33 33 LEU H H . . -2.974 . . . . . . . . A . 33 LEU N . . A . 33 LEU H . . . 33 . N . . . . . 33 . HN . . rr_2ksj 1 98 . 1 1 34 34 ALA N N . . . 1 1 34 34 ALA H H . . -6.727 . . . . . . . . A . 34 ALA N . . A . 34 ALA H . . . 34 . N . . . . . 34 . HN . . rr_2ksj 1 99 . 1 1 35 35 VAL N N . . . 1 1 35 35 VAL H H . . -6.112 . . . . . . . . A . 35 VAL N . . A . 35 VAL H . . . 35 . N . . . . . 35 . HN . . rr_2ksj 1 100 . 1 1 36 36 ALA N N . . . 1 1 36 36 ALA H H . . -3.257 . . . . . . . . A . 36 ALA N . . A . 36 ALA H . . . 36 . N . . . . . 36 . HN . . rr_2ksj 1 101 . 1 1 37 37 GLY N N . . . 1 1 37 37 GLY H H . . -4.186 . . . . . . . . A . 37 GLY N . . A . 37 GLY H . . . 37 . N . . . . . 37 . HN . . rr_2ksj 1 102 . 1 1 38 38 LEU N N . . . 1 1 38 38 LEU H H . . -7.648 . . . . . . . . A . 38 LEU N . . A . 38 LEU H . . . 38 . N . . . . . 38 . HN . . rr_2ksj 1 103 . 1 1 39 39 ILE N N . . . 1 1 39 39 ILE H H . . -5.248 . . . . . . . . A . 39 ILE N . . A . 39 ILE H . . . 39 . N . . . . . 39 . HN . . rr_2ksj 1 104 . 1 1 40 40 TYR N N . . . 1 1 40 40 TYR H H . . -3.607 . . . . . . . . A . 40 TYR N . . A . 40 TYR H . . . 40 . N . . . . . 40 . HN . . rr_2ksj 1 105 . 1 1 41 41 SER N N . . . 1 1 41 41 SER H H . . -5.628 . . . . . . . . A . 41 SER N . . A . 41 SER H . . . 41 . N . . . . . 41 . HN . . rr_2ksj 1 106 . 1 1 42 42 MET N N . . . 1 1 42 42 MET H H . . -7.136 . . . . . . . . A . 42 MET N . . A . 42 MET H . . . 42 . N . . . . . 42 . HN . . rr_2ksj 1 107 . 1 1 43 43 LEU N N . . . 1 1 43 43 LEU H H . . -2.154 . . . . . . . . A . 43 LEU N . . A . 43 LEU H . . . 43 . N . . . . . 43 . HN . . rr_2ksj 1 108 . 1 1 21 21 ALA N N . . . 1 1 21 21 ALA H H . . 0.704 . . . . . . . . A . 21 ALA N . . A . 21 ALA H . . . 21 . N . . . . . 21 . HN . . rr_2ksj 1 109 . 1 1 22 22 ILE N N . . . 1 1 22 22 ILE H H . . 3.518 . . . . . . . . A . 22 ILE N . . A . 22 ILE H . . . 22 . N . . . . . 22 . HN . . rr_2ksj 1 110 . 1 1 23 23 GLY N N . . . 1 1 23 23 GLY H H . . 8.369 . . . . . . . . A . 23 GLY N . . A . 23 GLY H . . . 23 . N . . . . . 23 . HN . . rr_2ksj 1 111 . 1 1 24 24 GLY N N . . . 1 1 24 24 GLY H H . . 10.280 . . . . . . . . A . 24 GLY N . . A . 24 GLY H . . . 24 . N . . . . . 24 . HN . . rr_2ksj 1 112 . 1 1 25 25 TYR N N . . . 1 1 25 25 TYR H H . . 7.753 . . . . . . . . A . 25 TYR N . . A . 25 TYR H . . . 25 . N . . . . . 25 . HN . . rr_2ksj 1 113 . 1 1 26 26 ILE N N . . . 1 1 26 26 ILE H H . . 9.343 . . . . . . . . A . 26 ILE N . . A . 26 ILE H . . . 26 . N . . . . . 26 . HN . . rr_2ksj 1 114 . 1 1 27 27 VAL N N . . . 1 1 27 27 VAL H H . . 13.992 . . . . . . . . A . 27 VAL N . . A . 27 VAL H . . . 27 . N . . . . . 27 . HN . . rr_2ksj 1 115 . 1 1 28 28 GLY N N . . . 1 1 28 28 GLY H H . . 10.827 . . . . . . . . A . 28 GLY N . . A . 28 GLY H . . . 28 . N . . . . . 28 . HN . . rr_2ksj 1 116 . 1 1 29 29 ALA N N . . . 1 1 29 29 ALA H H . . 4.981 . . . . . . . . A . 29 ALA N . . A . 29 ALA H . . . 29 . N . . . . . 29 . HN . . rr_2ksj 1 117 . 1 1 30 30 LEU N N . . . 1 1 30 30 LEU H H . . 11.810 . . . . . . . . A . 30 LEU N . . A . 30 LEU H . . . 30 . N . . . . . 30 . HN . . rr_2ksj 1 118 . 1 1 31 31 VAL N N . . . 1 1 31 31 VAL H H . . 13.949 . . . . . . . . A . 31 VAL N . . A . 31 VAL H . . . 31 . N . . . . . 31 . HN . . rr_2ksj 1 119 . 1 1 32 32 ILE N N . . . 1 1 32 32 ILE H H . . 7.753 . . . . . . . . A . 32 ILE N . . A . 32 ILE H . . . 32 . N . . . . . 32 . HN . . rr_2ksj 1 120 . 1 1 33 33 LEU N N . . . 1 1 33 33 LEU H H . . 7.136 . . . . . . . . A . 33 LEU N . . A . 33 LEU H . . . 33 . N . . . . . 33 . HN . . rr_2ksj 1 121 . 1 1 34 34 ALA N N . . . 1 1 34 34 ALA H H . . 13.718 . . . . . . . . A . 34 ALA N . . A . 34 ALA H . . . 34 . N . . . . . 34 . HN . . rr_2ksj 1 122 . 1 1 35 35 VAL N N . . . 1 1 35 35 VAL H H . . 12.285 . . . . . . . . A . 35 VAL N . . A . 35 VAL H . . . 35 . N . . . . . 35 . HN . . rr_2ksj 1 123 . 1 1 36 36 ALA N N . . . 1 1 36 36 ALA H H . . 7.454 . . . . . . . . A . 36 ALA N . . A . 36 ALA H . . . 36 . N . . . . . 36 . HN . . rr_2ksj 1 124 . 1 1 37 37 GLY N N . . . 1 1 37 37 GLY H H . . 9.652 . . . . . . . . A . 37 GLY N . . A . 37 GLY H . . . 37 . N . . . . . 37 . HN . . rr_2ksj 1 125 . 1 1 38 38 LEU N N . . . 1 1 38 38 LEU H H . . 14.980 . . . . . . . . A . 38 LEU N . . A . 38 LEU H . . . 38 . N . . . . . 38 . HN . . rr_2ksj 1 126 . 1 1 39 39 ILE N N . . . 1 1 39 39 ILE H H . . 10.857 . . . . . . . . A . 39 ILE N . . A . 39 ILE H . . . 39 . N . . . . . 39 . HN . . rr_2ksj 1 127 . 1 1 40 40 TYR N N . . . 1 1 40 40 TYR H H . . 8.168 . . . . . . . . A . 40 TYR N . . A . 40 TYR H . . . 40 . N . . . . . 40 . HN . . rr_2ksj 1 128 . 1 1 41 41 SER N N . . . 1 1 41 41 SER H H . . 11.800 . . . . . . . . A . 41 SER N . . A . 41 SER H . . . 41 . N . . . . . 41 . HN . . rr_2ksj 1 129 . 1 1 42 42 MET N N . . . 1 1 42 42 MET H H . . 14.252 . . . . . . . . A . 42 MET N . . A . 42 MET H . . . 42 . N . . . . . 42 . HN . . rr_2ksj 1 130 . 1 1 43 43 LEU N N . . . 1 1 43 43 LEU H H . . 4.759 . . . . . . . . A . 43 LEU N . . A . 43 LEU H . . . 43 . N . . . . . 43 . HN . . rr_2ksj 1 stop_ loop_ _RDC_constraint_comment_org.ID _RDC_constraint_comment_org.Comment_text _RDC_constraint_comment_org.Comment_begin_line _RDC_constraint_comment_org.Comment_begin_column _RDC_constraint_comment_org.Comment_end_line _RDC_constraint_comment_org.Comment_end_column _RDC_constraint_comment_org.Entry_ID _RDC_constraint_comment_org.RDC_constraint_list_ID 1 'xplor viol' 440 52 440 64 rr_2ksj 1 2 ; assign ( resid 600 and name OO ) ( resid 600 and name Z ) ( resid 600 and name X ) ( resid 600 and name Y ) ( resid 40 and name N ) ( resid 40 and name HN ) -1.76 0.5000 ! peak overlap ; 561 1 566 67 rr_2ksj 1 3 ; assign ( resid 600 and name OO ) ( resid 600 and name Z ) ( resid 600 and name X ) ( resid 600 and name Y ) ( resid 43 and name N ) ( resid 43 and name HN ) 9.91 0.5000 ! wave viol ; 582 1 587 63 rr_2ksj 1 4 ; !------------ NH dipolar couplings for Pf1 in unflipped bicelles ! 21 ALA ; 601 50 603 11 rr_2ksj 1 5 '( resid 22 and name HN ) -1.165 0.50 !-------REVISE FROM SPECTRA' 617 1 617 87 rr_2ksj 1 6 '! 22 ILE' 611 1 611 11 rr_2ksj 1 7 '! 23 GLY' 620 1 620 11 rr_2ksj 1 8 '! 24 GLY' 627 1 627 11 rr_2ksj 1 9 '! 25 TYR' 634 1 634 11 rr_2ksj 1 10 '! 26 ILE' 641 1 641 11 rr_2ksj 1 11 '! 27 VAL' 648 1 648 11 rr_2ksj 1 12 '! 28 GLY' 655 1 655 11 rr_2ksj 1 13 '! 29 ALA' 662 1 662 11 rr_2ksj 1 14 '! 30 LEU' 669 1 669 11 rr_2ksj 1 15 '! 31 VAL' 676 1 676 11 rr_2ksj 1 16 '! 32 ILE' 683 1 683 11 rr_2ksj 1 17 '! 33 LEU' 690 1 690 11 rr_2ksj 1 18 '! 34 ALA' 697 1 697 11 rr_2ksj 1 19 '! 35 VAL' 704 1 704 11 rr_2ksj 1 20 '! 36 ALA' 711 1 711 11 rr_2ksj 1 21 '! 37 GLY' 718 1 718 11 rr_2ksj 1 22 '! 38 LEU' 725 1 725 11 rr_2ksj 1 23 '! 39 ILE' 732 1 732 11 rr_2ksj 1 24 '! 40 TYR' 739 1 739 11 rr_2ksj 1 25 '! 41 SER' 746 1 746 11 rr_2ksj 1 26 '! 42 MET' 753 1 753 11 rr_2ksj 1 27 '! 43 LEU' 760 1 760 11 rr_2ksj 1 28 ; !------------ NH dipolar couplings for Pf1 in flipped bicelles ! 21 ALA ; 766 58 768 11 rr_2ksj 1 29 '! 22 ILE' 775 1 775 11 rr_2ksj 1 30 '! 23 GLY' 782 1 782 11 rr_2ksj 1 31 '! 24 GLY' 789 1 789 11 rr_2ksj 1 32 '! 25 TYR' 796 1 796 11 rr_2ksj 1 33 '! 26 ILE' 803 1 803 11 rr_2ksj 1 34 '! 27 VAL' 810 1 810 11 rr_2ksj 1 35 '! 28 GLY' 817 1 817 11 rr_2ksj 1 36 '! 29 ALA' 824 1 824 11 rr_2ksj 1 37 '! 30 LEU' 831 1 831 11 rr_2ksj 1 38 '! 31 VAL' 838 1 838 11 rr_2ksj 1 39 '! 32 ILE' 845 1 845 11 rr_2ksj 1 40 '! 33 LEU' 852 1 852 11 rr_2ksj 1 41 '! 34 ALA' 859 1 859 11 rr_2ksj 1 42 '! 35 VAL' 866 1 866 11 rr_2ksj 1 43 '! 36 ALA' 873 1 873 11 rr_2ksj 1 44 '! 37 GLY' 880 1 880 11 rr_2ksj 1 45 '! 38 LEU' 887 1 887 11 rr_2ksj 1 46 '! 39 ILE' 894 1 894 11 rr_2ksj 1 47 '! 40 TYR' 901 1 901 11 rr_2ksj 1 48 '! 41 SER' 908 1 908 11 rr_2ksj 1 49 '! 42 MET' 915 1 915 11 rr_2ksj 1 50 '! 43 LEU' 922 1 922 11 rr_2ksj 1 stop_ loop_ _RDC_constraint_parse_err.ID _RDC_constraint_parse_err.Content _RDC_constraint_parse_err.Begin_line _RDC_constraint_parse_err.Begin_column _RDC_constraint_parse_err.End_line _RDC_constraint_parse_err.End_column _RDC_constraint_parse_err.Entry_ID _RDC_constraint_parse_err.RDC_constraint_list_ID 1 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 20 and name C ) ( resid 21 and name N ) ( resid 21 and name HN ) 8.630 1.0 1.0' 933 1 939 67 rr_2ksj 1 2 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 21 and name C ) ( resid 22 and name N ) ( resid 22 and name HN ) -6.847 1.0 1.0' 941 1 947 67 rr_2ksj 1 3 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 22 and name C ) ( resid 23 and name N ) ( resid 23 and name HN ) -19.674 1.0 1.0' 949 1 955 67 rr_2ksj 1 4 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 23 and name C ) ( resid 24 and name N ) ( resid 24 and name HN ) -3.869 1.0 1.0' 957 1 963 67 rr_2ksj 1 5 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 24 and name C ) ( resid 25 and name N ) ( resid 25 and name HN ) -12.867 1.0 1.0' 965 1 971 67 rr_2ksj 1 6 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 25 and name C ) ( resid 26 and name N ) ( resid 26 and name HN ) -32.785 1.0 1.0' 973 1 979 67 rr_2ksj 1 7 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 26 and name C ) ( resid 27 and name N ) ( resid 27 and name HN ) -25.058 1.0 1.0' 981 1 987 67 rr_2ksj 1 8 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 27 and name C ) ( resid 28 and name N ) ( resid 28 and name HN ) -3.869 1.0 1.0' 989 1 995 67 rr_2ksj 1 9 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 28 and name C ) ( resid 29 and name N ) ( resid 29 and name HN ) -17.552 1.0 1.0' 997 1 1003 67 rr_2ksj 1 10 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 29 and name C ) ( resid 30 and name N ) ( resid 30 and name HN ) -35.615 1.0 1.0' 1005 1 1011 67 rr_2ksj 1 11 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 30 and name C ) ( resid 31 and name N ) ( resid 31 and name HN ) -15.847 1.0 1.0' 1013 1 1019 67 rr_2ksj 1 12 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 31 and name C ) ( resid 32 and name N ) ( resid 32 and name HN ) -12.867 1.0 1.0' 1021 1 1027 67 rr_2ksj 1 13 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 32 and name C ) ( resid 33 and name N ) ( resid 33 and name HN ) -30.428 1.0 1.0' 1029 1 1035 67 rr_2ksj 1 14 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 33 and name C ) ( resid 34 and name N ) ( resid 34 and name HN ) -31.610 1.0 1.0' 1037 1 1043 67 rr_2ksj 1 15 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 34 and name C ) ( resid 35 and name N ) ( resid 35 and name HN ) -13.169 1.0 1.0' 1045 1 1051 67 rr_2ksj 1 16 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 35 and name C ) ( resid 36 and name N ) ( resid 36 and name HN ) -17.154 1.0 1.0' 1053 1 1059 67 rr_2ksj 1 17 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 36 and name C ) ( resid 37 and name N ) ( resid 37 and name HN ) -36.538 1.0 1.0' 1061 1 1067 67 rr_2ksj 1 18 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 37 and name C ) ( resid 38 and name N ) ( resid 38 and name HN ) -24.267 1.0 1.0' 1069 1 1075 67 rr_2ksj 1 19 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 38 and name C ) ( resid 39 and name N ) ( resid 39 and name HN ) -12.531 1.0 1.0' 1077 1 1083 67 rr_2ksj 1 20 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 39 and name C ) ( resid 40 and name N ) ( resid 40 and name HN ) -27.760 1.0 1.0' 1085 1 1091 67 rr_2ksj 1 21 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 40 and name C ) ( resid 41 and name N ) ( resid 41 and name HN ) -43.331 1.0 1.0' 1093 1 1099 67 rr_2ksj 1 22 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 41 and name C ) ( resid 42 and name N ) ( resid 42 and name HN ) -20.603 1.0 1.0' 1101 1 1107 67 rr_2ksj 1 23 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 42 and name C ) ( resid 43 and name N ) ( resid 43 and name HN ) -6.441 1.0 1.0!!------------ N chemical shift anisotropies for Pf1 in bilayers oriented on glass' 1109 1 1115 67 rr_2ksj 1 24 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 4 and name C ) ( resid 5 and name N ) ( resid 5 and name HN ) -13.30 1.0 1.0' 1120 1 1126 60 rr_2ksj 1 25 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 11 and name C ) ( resid 12 and name N ) ( resid 12 and name HN ) -27.30 1.0 1.0' 1128 1 1134 60 rr_2ksj 1 26 'assign ( resid 810 and name OO ) ( resid 810 and name Z ) ( resid 810 and name X ) ( resid 810 and name Y ) ( resid 12 and name C ) ( resid 13 and name N ) ( resid 13 and name HN ) -44.30 1.0 1.0' 1136 1 1142 60 rr_2ksj 1 stop_ save_ save_MR_file_comment_1 _Org_constr_file_comment.Sf_framecode MR_file_comment_1 _Org_constr_file_comment.Sf_category org_constr_file_comment _Org_constr_file_comment.Entry_ID rr_2ksj _Org_constr_file_comment.ID 1 _Org_constr_file_comment.Constraint_file_ID 1 _Org_constr_file_comment.Block_ID 1 _Org_constr_file_comment.Details 'Generated by Wattos' _Org_constr_file_comment.Comment ; *HEADER VIRAL PROTEIN 05-JAN-10 2KSJ *TITLE STRUCTURE AND DYNAMICS OF THE MEMBRANE-BOUND FORM OF PF1 COAT PROTEIN: *TITLE 2 IMPLICATIONS FOR STRUCTURAL REARRANGEMENT DURING VIRUS ASSEMBLY *COMPND MOL_ID: 1; *COMPND 2 MOLECULE: CAPSID PROTEIN G8P; *COMPND 3 CHAIN: A; *COMPND 4 FRAGMENT: UNP RESIDUES 37-82; *COMPND 5 SYNONYM: GENE 8 PROTEIN, G8P, COAT PROTEIN B, MAJOR COAT PROTEIN; *COMPND 6 ENGINEERED: YES *SOURCE MOL_ID: 1; *SOURCE 2 ORGANISM_SCIENTIFIC: PSEUDOMONAS PHAGE PF1; *SOURCE 3 ORGANISM_COMMON: BACTERIOPHAGE PF1; *SOURCE 4 ORGANISM_TAXID: 10871; *SOURCE 5 GENE: VIII *KEYWDS MEMBRANE PROTEIN, CAPSID PROTEIN, HOST MEMBRANE, MEMBRANE, *KEYWDS 2 TRANSMEMBRANE, VIRION, VIRAL PROTEIN *EXPDTA SOLUTION NMR *EXPDTA SOLID-STATE NMR *NUMMDL 10 *AUTHOR S.PARK, F.MARASSI, D.BLACK, S.J.OPELLA *REVDAT 1 10-NOV-10 2KSJ 0 ; save_