data_2KUX # _entry.id 2KUX # _audit_conform.dict_name mmcif_pdbx.dic _audit_conform.dict_version 5.279 _audit_conform.dict_location http://mmcif.pdb.org/dictionaries/ascii/mmcif_pdbx.dic # loop_ _database_2.database_id _database_2.database_code PDB 2KUX RCSB RCSB101603 WWPDB D_1000101603 # _pdbx_database_status.deposit_site BMRB _pdbx_database_status.entry_id 2KUX _pdbx_database_status.process_site PDBJ _pdbx_database_status.recvd_initial_deposition_date 2010-03-01 _pdbx_database_status.SG_entry ? _pdbx_database_status.status_code REL _pdbx_database_status.status_code_mr REL _pdbx_database_status.status_code_sf ? _pdbx_database_status.status_code_cs ? _pdbx_database_status.methods_development_category ? _pdbx_database_status.pdb_format_compatible Y # loop_ _audit_author.name _audit_author.pdbx_ordinal 'Rosengren, K.J.' 1 'Craik, D.J.' 2 # _citation.id primary _citation.title 'Structural and biochemical characteristics of the cyclotide kalata B5 from Oldenlandia affinis' _citation.journal_abbrev Biopolymers _citation.journal_volume 94 _citation.page_first 647 _citation.page_last 658 _citation.year 2010 _citation.journal_id_ASTM BIPMAA _citation.country US _citation.journal_id_ISSN 0006-3525 _citation.journal_id_CSD 0161 _citation.book_publisher ? _citation.pdbx_database_id_PubMed 20564013 _citation.pdbx_database_id_DOI 10.1002/bip.21409 # loop_ _citation_author.citation_id _citation_author.name _citation_author.ordinal primary 'Plan, M.R.' 1 primary 'Rosengren, K.J.' 2 primary 'Sando, L.' 3 primary 'Daly, N.L.' 4 primary 'Craik, D.J.' 5 # _entity.id 1 _entity.type polymer _entity.src_method nat _entity.pdbx_description Kalata-B5 _entity.formula_weight 3086.605 _entity.pdbx_number_of_molecules 1 _entity.pdbx_ec ? _entity.pdbx_mutation ? _entity.pdbx_fragment ? _entity.details ? # _entity_poly.entity_id 1 _entity_poly.type 'polypeptide(L)' _entity_poly.nstd_linkage no _entity_poly.nstd_monomer no _entity_poly.pdbx_seq_one_letter_code GTPCGESCVYIPCISGVIGCSCTDKVCYLN _entity_poly.pdbx_seq_one_letter_code_can GTPCGESCVYIPCISGVIGCSCTDKVCYLN _entity_poly.pdbx_strand_id A _entity_poly.pdbx_target_identifier ? # loop_ _entity_poly_seq.entity_id _entity_poly_seq.num _entity_poly_seq.mon_id _entity_poly_seq.hetero 1 1 GLY n 1 2 THR n 1 3 PRO n 1 4 CYS n 1 5 GLY n 1 6 GLU n 1 7 SER n 1 8 CYS n 1 9 VAL n 1 10 TYR n 1 11 ILE n 1 12 PRO n 1 13 CYS n 1 14 ILE n 1 15 SER n 1 16 GLY n 1 17 VAL n 1 18 ILE n 1 19 GLY n 1 20 CYS n 1 21 SER n 1 22 CYS n 1 23 THR n 1 24 ASP n 1 25 LYS n 1 26 VAL n 1 27 CYS n 1 28 TYR n 1 29 LEU n 1 30 ASN n # _entity_src_nat.entity_id 1 _entity_src_nat.pdbx_src_id 1 _entity_src_nat.pdbx_alt_source_flag sample _entity_src_nat.pdbx_beg_seq_num ? _entity_src_nat.pdbx_end_seq_num ? _entity_src_nat.common_name ? _entity_src_nat.pdbx_organism_scientific 'Oldenlandia affinis' _entity_src_nat.pdbx_ncbi_taxonomy_id 60225 _entity_src_nat.genus ? _entity_src_nat.species ? _entity_src_nat.strain ? _entity_src_nat.tissue ? _entity_src_nat.tissue_fraction ? _entity_src_nat.pdbx_secretion ? _entity_src_nat.pdbx_fragment ? _entity_src_nat.pdbx_variant ? _entity_src_nat.pdbx_cell_line ? _entity_src_nat.pdbx_atcc ? _entity_src_nat.pdbx_cellular_location ? _entity_src_nat.pdbx_organ ? _entity_src_nat.pdbx_organelle ? _entity_src_nat.pdbx_cell ? _entity_src_nat.pdbx_plasmid_name ? _entity_src_nat.pdbx_plasmid_details ? _entity_src_nat.details ? # _struct_ref.id 1 _struct_ref.db_name UNP _struct_ref.db_code KAB5_OLDAF _struct_ref.pdbx_db_accession P58456 _struct_ref.entity_id 1 _struct_ref.pdbx_seq_one_letter_code GTPCGESCVYIPCISGVIGCSCTDKVCYLN _struct_ref.pdbx_align_begin 1 _struct_ref.pdbx_db_isoform ? # _struct_ref_seq.align_id 1 _struct_ref_seq.ref_id 1 _struct_ref_seq.pdbx_PDB_id_code 2KUX _struct_ref_seq.pdbx_strand_id A _struct_ref_seq.seq_align_beg 1 _struct_ref_seq.pdbx_seq_align_beg_ins_code ? _struct_ref_seq.seq_align_end 30 _struct_ref_seq.pdbx_seq_align_end_ins_code ? _struct_ref_seq.pdbx_db_accession P58456 _struct_ref_seq.db_align_beg 1 _struct_ref_seq.pdbx_db_align_beg_ins_code ? _struct_ref_seq.db_align_end 30 _struct_ref_seq.pdbx_db_align_end_ins_code ? _struct_ref_seq.pdbx_auth_seq_align_beg 1 _struct_ref_seq.pdbx_auth_seq_align_end 30 # loop_ _chem_comp.id _chem_comp.type _chem_comp.mon_nstd_flag _chem_comp.name _chem_comp.pdbx_synonyms _chem_comp.formula _chem_comp.formula_weight ASN 'L-peptide linking' y ASPARAGINE ? 'C4 H8 N2 O3' 132.118 ASP 'L-peptide linking' y 'ASPARTIC ACID' ? 'C4 H7 N O4' 133.103 CYS 'L-peptide linking' y CYSTEINE ? 'C3 H7 N O2 S' 121.158 GLU 'L-peptide linking' y 'GLUTAMIC ACID' ? 'C5 H9 N O4' 147.129 GLY 'peptide linking' y GLYCINE ? 'C2 H5 N O2' 75.067 ILE 'L-peptide linking' y ISOLEUCINE ? 'C6 H13 N O2' 131.173 LEU 'L-peptide linking' y LEUCINE ? 'C6 H13 N O2' 131.173 LYS 'L-peptide linking' y LYSINE ? 'C6 H15 N2 O2 1' 147.195 PRO 'L-peptide linking' y PROLINE ? 'C5 H9 N O2' 115.130 SER 'L-peptide linking' y SERINE ? 'C3 H7 N O3' 105.093 THR 'L-peptide linking' y THREONINE ? 'C4 H9 N O3' 119.119 TYR 'L-peptide linking' y TYROSINE ? 'C9 H11 N O3' 181.189 VAL 'L-peptide linking' y VALINE ? 'C5 H11 N O2' 117.146 # loop_ _pdbx_nmr_exptl.conditions_id _pdbx_nmr_exptl.experiment_id _pdbx_nmr_exptl.solution_id _pdbx_nmr_exptl.type 1 1 1 '2D 1H-1H NOESY' 1 2 1 '2D 1H-1H TOCSY' 1 3 1 '2D DQF-COSY' # _pdbx_nmr_exptl_sample_conditions.conditions_id 1 _pdbx_nmr_exptl_sample_conditions.ionic_strength 0 _pdbx_nmr_exptl_sample_conditions.pH 5 _pdbx_nmr_exptl_sample_conditions.pressure ambient _pdbx_nmr_exptl_sample_conditions.pressure_units ? _pdbx_nmr_exptl_sample_conditions.temperature 298 _pdbx_nmr_exptl_sample_conditions.temperature_units K # _pdbx_nmr_sample_details.contents '1-2mM Kalata-B5, 90% H2O/10% D2O' _pdbx_nmr_sample_details.solution_id 1 _pdbx_nmr_sample_details.solvent_system '90% H2O/10% D2O' # _pdbx_nmr_spectrometer.field_strength 600 _pdbx_nmr_spectrometer.manufacturer Bruker _pdbx_nmr_spectrometer.model Avance _pdbx_nmr_spectrometer.spectrometer_id 1 _pdbx_nmr_spectrometer.type 'Bruker Avance' # _pdbx_nmr_refine.entry_id 2KUX _pdbx_nmr_refine.method 'torsion angle dynamics' _pdbx_nmr_refine.details ;Structures were calculated using torsion angle dynamics and subsequently refined by cartesian coordinate dynamics and powell minimization in explicit solvent using CNS. ; _pdbx_nmr_refine.software_ordinal 1 # _pdbx_nmr_ensemble.average_constraint_violations_per_residue ? _pdbx_nmr_ensemble.average_constraints_per_residue ? _pdbx_nmr_ensemble.average_distance_constraint_violation ? _pdbx_nmr_ensemble.average_torsion_angle_constraint_violation ? _pdbx_nmr_ensemble.conformer_selection_criteria 'structures with the lowest energy' _pdbx_nmr_ensemble.conformers_calculated_total_number 50 _pdbx_nmr_ensemble.conformers_submitted_total_number 20 _pdbx_nmr_ensemble.distance_constraint_violation_method ? _pdbx_nmr_ensemble.entry_id 2KUX _pdbx_nmr_ensemble.maximum_distance_constraint_violation ? _pdbx_nmr_ensemble.maximum_lower_distance_constraint_violation ? _pdbx_nmr_ensemble.maximum_torsion_angle_constraint_violation ? _pdbx_nmr_ensemble.maximum_upper_distance_constraint_violation ? _pdbx_nmr_ensemble.representative_conformer 1 _pdbx_nmr_ensemble.torsion_angle_constraint_violation_method ? # _pdbx_nmr_representative.conformer_id 1 _pdbx_nmr_representative.entry_id 2KUX _pdbx_nmr_representative.selection_criteria 'lowest energy' # loop_ _pdbx_nmr_software.authors _pdbx_nmr_software.classification _pdbx_nmr_software.name _pdbx_nmr_software.version _pdbx_nmr_software.ordinal 'Bruker Biospin' collection xwinnmr ? 1 'Bruker Biospin' processing xwinnmr ? 2 'Bartels et al.' 'data analysis' XEASY ? 3 'Guntert, Braun and Wuthrich' 'structure solution' DYANA ? 4 'Brunger, Adams, Clore, Gros, Nilges and Read' refinement CNS 1.2 5 # _exptl.absorpt_coefficient_mu ? _exptl.absorpt_correction_T_max ? _exptl.absorpt_correction_T_min ? _exptl.absorpt_correction_type ? _exptl.absorpt_process_details ? _exptl.crystals_number ? _exptl.details ;NMR solution structure of backbone cyclic plant peptide kalata B5. This peptide is head-to-tail cyclic, i.e. has a peptide bond between the N and C terminus. ; _exptl.entry_id 2KUX _exptl.method 'SOLUTION NMR' _exptl.method_details ? # _struct.entry_id 2KUX _struct.title 'Solution structure of the cyclotide kalata B5 from Oldenlandia affinis' _struct.pdbx_descriptor Kalata-B5 _struct.pdbx_model_details 'lowest energy, model 1' _struct.pdbx_CASP_flag N _struct.pdbx_model_type_details ? # _struct_keywords.entry_id 2KUX _struct_keywords.pdbx_keywords 'PLANT PROTEIN' _struct_keywords.text 'cyclotide, plant defense peptide, circular backbone, Disulfide bond, Knottin, Plant defense, PLANT PROTEIN' # _struct_asym.id A _struct_asym.pdbx_blank_PDB_chainid_flag N _struct_asym.pdbx_modified N _struct_asym.entity_id 1 _struct_asym.details ? # _struct_biol.id 1 _struct_biol.details ? # _struct_conf.conf_type_id HELX_P _struct_conf.id HELX_P1 _struct_conf.pdbx_PDB_helix_id 1 _struct_conf.beg_label_comp_id ILE _struct_conf.beg_label_asym_id A _struct_conf.beg_label_seq_id 14 _struct_conf.pdbx_beg_PDB_ins_code ? _struct_conf.end_label_comp_id GLY _struct_conf.end_label_asym_id A _struct_conf.end_label_seq_id 19 _struct_conf.pdbx_end_PDB_ins_code ? _struct_conf.beg_auth_comp_id ILE _struct_conf.beg_auth_asym_id A _struct_conf.beg_auth_seq_id 14 _struct_conf.end_auth_comp_id GLY _struct_conf.end_auth_asym_id A _struct_conf.end_auth_seq_id 19 _struct_conf.pdbx_PDB_helix_class 5 _struct_conf.details ? _struct_conf.pdbx_PDB_helix_length 6 # _struct_conf_type.id HELX_P _struct_conf_type.criteria ? _struct_conf_type.reference ? # loop_ _struct_conn.id _struct_conn.conn_type_id _struct_conn.pdbx_leaving_atom_flag _struct_conn.pdbx_PDB_id _struct_conn.ptnr1_label_asym_id _struct_conn.ptnr1_label_comp_id _struct_conn.ptnr1_label_seq_id _struct_conn.ptnr1_label_atom_id _struct_conn.pdbx_ptnr1_label_alt_id _struct_conn.pdbx_ptnr1_PDB_ins_code _struct_conn.pdbx_ptnr1_standard_comp_id _struct_conn.ptnr1_symmetry _struct_conn.ptnr2_label_asym_id _struct_conn.ptnr2_label_comp_id _struct_conn.ptnr2_label_seq_id _struct_conn.ptnr2_label_atom_id _struct_conn.pdbx_ptnr2_label_alt_id _struct_conn.pdbx_ptnr2_PDB_ins_code _struct_conn.ptnr1_auth_asym_id _struct_conn.ptnr1_auth_comp_id _struct_conn.ptnr1_auth_seq_id _struct_conn.ptnr2_auth_asym_id _struct_conn.ptnr2_auth_comp_id _struct_conn.ptnr2_auth_seq_id _struct_conn.ptnr2_symmetry _struct_conn.pdbx_ptnr3_label_atom_id _struct_conn.pdbx_ptnr3_label_seq_id _struct_conn.pdbx_ptnr3_label_comp_id _struct_conn.pdbx_ptnr3_label_asym_id _struct_conn.pdbx_ptnr3_label_alt_id _struct_conn.pdbx_ptnr3_PDB_ins_code _struct_conn.details _struct_conn.pdbx_dist_value _struct_conn.pdbx_value_order disulf1 disulf ? ? A CYS 4 SG ? ? ? 1_555 A CYS 20 SG ? ? A CYS 4 A CYS 20 1_555 ? ? ? ? ? ? ? 2.029 ? disulf2 disulf ? ? A CYS 8 SG ? ? ? 1_555 A CYS 22 SG ? ? A CYS 8 A CYS 22 1_555 ? ? ? ? ? ? ? 2.028 ? disulf3 disulf ? ? A CYS 13 SG ? ? ? 1_555 A CYS 27 SG ? ? A CYS 13 A CYS 27 1_555 ? ? ? ? ? ? ? 2.029 ? covale1 covale ? ? A GLY 1 N ? ? ? 1_555 A ASN 30 C ? ? A GLY 1 A ASN 30 1_555 ? ? ? ? ? ? ? 1.323 ? # loop_ _struct_conn_type.id _struct_conn_type.criteria _struct_conn_type.reference disulf ? ? covale ? ? # _struct_sheet.id A _struct_sheet.type ? _struct_sheet.number_strands 3 _struct_sheet.details ? # loop_ _struct_sheet_order.sheet_id _struct_sheet_order.range_id_1 _struct_sheet_order.range_id_2 _struct_sheet_order.offset _struct_sheet_order.sense A 1 2 ? anti-parallel A 2 3 ? anti-parallel # loop_ _struct_sheet_range.sheet_id _struct_sheet_range.id _struct_sheet_range.beg_label_comp_id _struct_sheet_range.beg_label_asym_id _struct_sheet_range.beg_label_seq_id _struct_sheet_range.pdbx_beg_PDB_ins_code _struct_sheet_range.end_label_comp_id _struct_sheet_range.end_label_asym_id _struct_sheet_range.end_label_seq_id _struct_sheet_range.pdbx_end_PDB_ins_code _struct_sheet_range.beg_auth_comp_id _struct_sheet_range.beg_auth_asym_id _struct_sheet_range.beg_auth_seq_id _struct_sheet_range.end_auth_comp_id _struct_sheet_range.end_auth_asym_id _struct_sheet_range.end_auth_seq_id A 1 THR A 2 ? SER A 7 ? THR A 2 SER A 7 A 2 VAL A 26 ? LEU A 29 ? VAL A 26 LEU A 29 A 3 SER A 21 ? THR A 23 ? SER A 21 THR A 23 # loop_ _pdbx_struct_sheet_hbond.sheet_id _pdbx_struct_sheet_hbond.range_id_1 _pdbx_struct_sheet_hbond.range_id_2 _pdbx_struct_sheet_hbond.range_1_label_atom_id _pdbx_struct_sheet_hbond.range_1_label_comp_id _pdbx_struct_sheet_hbond.range_1_label_asym_id _pdbx_struct_sheet_hbond.range_1_label_seq_id _pdbx_struct_sheet_hbond.range_1_PDB_ins_code _pdbx_struct_sheet_hbond.range_1_auth_atom_id _pdbx_struct_sheet_hbond.range_1_auth_comp_id _pdbx_struct_sheet_hbond.range_1_auth_asym_id _pdbx_struct_sheet_hbond.range_1_auth_seq_id _pdbx_struct_sheet_hbond.range_2_label_atom_id _pdbx_struct_sheet_hbond.range_2_label_comp_id _pdbx_struct_sheet_hbond.range_2_label_asym_id _pdbx_struct_sheet_hbond.range_2_label_seq_id _pdbx_struct_sheet_hbond.range_2_PDB_ins_code _pdbx_struct_sheet_hbond.range_2_auth_atom_id _pdbx_struct_sheet_hbond.range_2_auth_comp_id _pdbx_struct_sheet_hbond.range_2_auth_asym_id _pdbx_struct_sheet_hbond.range_2_auth_seq_id A 1 2 N THR A 2 ? N THR A 2 O LEU A 29 ? O LEU A 29 A 2 3 O VAL A 26 ? O VAL A 26 N THR A 23 ? N THR A 23 # _atom_sites.entry_id 2KUX _atom_sites.fract_transf_matrix[1][1] 1.000000 _atom_sites.fract_transf_matrix[1][2] 0.000000 _atom_sites.fract_transf_matrix[1][3] 0.000000 _atom_sites.fract_transf_matrix[2][1] 0.000000 _atom_sites.fract_transf_matrix[2][2] 1.000000 _atom_sites.fract_transf_matrix[2][3] 0.000000 _atom_sites.fract_transf_matrix[3][1] 0.000000 _atom_sites.fract_transf_matrix[3][2] 0.000000 _atom_sites.fract_transf_matrix[3][3] 1.000000 _atom_sites.fract_transf_vector[1] 0.00000 _atom_sites.fract_transf_vector[2] 0.00000 _atom_sites.fract_transf_vector[3] 0.00000 # loop_ _atom_type.symbol C H N O S # loop_ _pdbx_poly_seq_scheme.asym_id _pdbx_poly_seq_scheme.entity_id _pdbx_poly_seq_scheme.seq_id _pdbx_poly_seq_scheme.mon_id _pdbx_poly_seq_scheme.ndb_seq_num _pdbx_poly_seq_scheme.pdb_seq_num _pdbx_poly_seq_scheme.auth_seq_num _pdbx_poly_seq_scheme.pdb_mon_id _pdbx_poly_seq_scheme.auth_mon_id _pdbx_poly_seq_scheme.pdb_strand_id _pdbx_poly_seq_scheme.pdb_ins_code _pdbx_poly_seq_scheme.hetero A 1 1 GLY 1 1 1 GLY GLY A . n A 1 2 THR 2 2 2 THR THR A . n A 1 3 PRO 3 3 3 PRO PRO A . n A 1 4 CYS 4 4 4 CYS CYS A . n A 1 5 GLY 5 5 5 GLY GLY A . n A 1 6 GLU 6 6 6 GLU GLU A . n A 1 7 SER 7 7 7 SER SER A . n A 1 8 CYS 8 8 8 CYS CYS A . n A 1 9 VAL 9 9 9 VAL VAL A . n A 1 10 TYR 10 10 10 TYR TYR A . n A 1 11 ILE 11 11 11 ILE ILE A . n A 1 12 PRO 12 12 12 PRO PRO A . n A 1 13 CYS 13 13 13 CYS CYS A . n A 1 14 ILE 14 14 14 ILE ILE A . n A 1 15 SER 15 15 15 SER SER A . n A 1 16 GLY 16 16 16 GLY GLY A . n A 1 17 VAL 17 17 17 VAL VAL A . n A 1 18 ILE 18 18 18 ILE ILE A . n A 1 19 GLY 19 19 19 GLY GLY A . n A 1 20 CYS 20 20 20 CYS CYS A . n A 1 21 SER 21 21 21 SER SER A . n A 1 22 CYS 22 22 22 CYS CYS A . n A 1 23 THR 23 23 23 THR THR A . n A 1 24 ASP 24 24 24 ASP ASP A . n A 1 25 LYS 25 25 25 LYS LYS A . n A 1 26 VAL 26 26 26 VAL VAL A . n A 1 27 CYS 27 27 27 CYS CYS A . n A 1 28 TYR 28 28 28 TYR TYR A . n A 1 29 LEU 29 29 29 LEU LEU A . n A 1 30 ASN 30 30 30 ASN ASN A . n # _pdbx_struct_assembly.id 1 _pdbx_struct_assembly.details author_defined_assembly _pdbx_struct_assembly.method_details ? _pdbx_struct_assembly.oligomeric_details monomeric _pdbx_struct_assembly.oligomeric_count 1 # _pdbx_struct_assembly_gen.assembly_id 1 _pdbx_struct_assembly_gen.oper_expression 1 _pdbx_struct_assembly_gen.asym_id_list A # _pdbx_struct_oper_list.id 1 _pdbx_struct_oper_list.type 'identity operation' _pdbx_struct_oper_list.name 1_555 _pdbx_struct_oper_list.symmetry_operation x,y,z _pdbx_struct_oper_list.matrix[1][1] 1.0000000000 _pdbx_struct_oper_list.matrix[1][2] 0.0000000000 _pdbx_struct_oper_list.matrix[1][3] 0.0000000000 _pdbx_struct_oper_list.vector[1] 0.0000000000 _pdbx_struct_oper_list.matrix[2][1] 0.0000000000 _pdbx_struct_oper_list.matrix[2][2] 1.0000000000 _pdbx_struct_oper_list.matrix[2][3] 0.0000000000 _pdbx_struct_oper_list.vector[2] 0.0000000000 _pdbx_struct_oper_list.matrix[3][1] 0.0000000000 _pdbx_struct_oper_list.matrix[3][2] 0.0000000000 _pdbx_struct_oper_list.matrix[3][3] 1.0000000000 _pdbx_struct_oper_list.vector[3] 0.0000000000 # loop_ _pdbx_audit_revision_history.ordinal _pdbx_audit_revision_history.data_content_type _pdbx_audit_revision_history.major_revision _pdbx_audit_revision_history.minor_revision _pdbx_audit_revision_history.revision_date 1 'Structure model' 1 0 2010-03-23 2 'Structure model' 1 1 2011-07-13 3 'Structure model' 1 2 2016-06-01 # _pdbx_audit_revision_details.ordinal 1 _pdbx_audit_revision_details.revision_ordinal 1 _pdbx_audit_revision_details.data_content_type 'Structure model' _pdbx_audit_revision_details.provider repository _pdbx_audit_revision_details.type 'Initial release' _pdbx_audit_revision_details.description ? # loop_ _pdbx_audit_revision_group.ordinal _pdbx_audit_revision_group.revision_ordinal _pdbx_audit_revision_group.data_content_type _pdbx_audit_revision_group.group 1 2 'Structure model' 'Version format compliance' 2 3 'Structure model' 'Database references' # _pdbx_nmr_exptl_sample.component Kalata-B5 _pdbx_nmr_exptl_sample.concentration ? _pdbx_nmr_exptl_sample.concentration_range 1-2 _pdbx_nmr_exptl_sample.concentration_units mM _pdbx_nmr_exptl_sample.isotopic_labeling ? _pdbx_nmr_exptl_sample.solution_id 1 # loop_ _pdbx_validate_close_contact.id _pdbx_validate_close_contact.PDB_model_num _pdbx_validate_close_contact.auth_atom_id_1 _pdbx_validate_close_contact.auth_asym_id_1 _pdbx_validate_close_contact.auth_comp_id_1 _pdbx_validate_close_contact.auth_seq_id_1 _pdbx_validate_close_contact.PDB_ins_code_1 _pdbx_validate_close_contact.label_alt_id_1 _pdbx_validate_close_contact.auth_atom_id_2 _pdbx_validate_close_contact.auth_asym_id_2 _pdbx_validate_close_contact.auth_comp_id_2 _pdbx_validate_close_contact.auth_seq_id_2 _pdbx_validate_close_contact.PDB_ins_code_2 _pdbx_validate_close_contact.label_alt_id_2 _pdbx_validate_close_contact.dist 1 1 HA2 A GLY 16 ? ? HB2 A CYS 20 ? ? 1.27 2 2 HA2 A GLY 16 ? ? HB2 A CYS 20 ? ? 1.34 3 5 OD1 A ASP 24 ? ? HZ1 A LYS 25 ? ? 1.53 4 7 OD1 A ASP 24 ? ? HZ1 A LYS 25 ? ? 1.49 5 9 HA A VAL 9 ? ? HD2 A LYS 25 ? ? 1.28 6 10 OD1 A ASP 24 ? ? HZ3 A LYS 25 ? ? 1.54 7 15 OD1 A ASP 24 ? ? HZ3 A LYS 25 ? ? 1.55 8 17 OD1 A ASP 24 ? ? HZ1 A LYS 25 ? ? 1.60 9 18 OE1 A GLU 6 ? ? HG A SER 15 ? ? 1.58 10 20 OD1 A ASP 24 ? ? HZ3 A LYS 25 ? ? 1.54 # loop_ _pdbx_validate_torsion.id _pdbx_validate_torsion.PDB_model_num _pdbx_validate_torsion.auth_comp_id _pdbx_validate_torsion.auth_asym_id _pdbx_validate_torsion.auth_seq_id _pdbx_validate_torsion.PDB_ins_code _pdbx_validate_torsion.label_alt_id _pdbx_validate_torsion.phi _pdbx_validate_torsion.psi 1 2 LYS A 25 ? ? 72.43 -4.28 2 3 CYS A 8 ? ? -109.87 48.10 3 3 LYS A 25 ? ? 75.99 -9.79 4 4 CYS A 8 ? ? -105.76 47.09 5 4 LYS A 25 ? ? 73.80 -4.45 6 5 CYS A 8 ? ? -117.89 50.62 7 5 TYR A 10 ? ? -128.27 -50.67 8 5 LYS A 25 ? ? 74.22 -9.82 9 6 ILE A 14 ? ? 73.41 -55.53 10 7 CYS A 8 ? ? -114.78 51.06 11 7 LYS A 25 ? ? 54.15 14.68 12 8 LYS A 25 ? ? 78.09 -9.85 13 10 CYS A 8 ? ? -150.88 41.84 14 10 LYS A 25 ? ? 71.23 -0.33 15 11 CYS A 8 ? ? -151.43 50.57 16 11 SER A 15 ? ? -76.65 22.07 17 12 CYS A 8 ? ? -150.32 49.25 18 12 TYR A 10 ? ? -125.17 -50.00 19 13 CYS A 8 ? ? -151.04 41.85 20 13 CYS A 13 ? ? -59.48 106.84 21 14 CYS A 8 ? ? -151.12 39.64 22 15 ILE A 14 ? ? 74.19 -57.07 23 16 LYS A 25 ? ? 75.09 -5.70 24 17 CYS A 8 ? ? -151.54 45.45 25 17 SER A 15 ? ? -76.01 20.19 26 18 CYS A 8 ? ? -100.44 51.89 27 18 TYR A 10 ? ? -142.58 -42.25 28 19 LYS A 25 ? ? 70.96 -0.50 29 20 CYS A 8 ? ? -101.37 45.39 30 20 TYR A 10 ? ? -128.93 -50.80 31 20 ILE A 14 ? ? 71.48 -44.91 32 20 LYS A 25 ? ? 72.04 -7.71 #