data_1HR3 # _entry.id 1HR3 # _audit_conform.dict_name mmcif_pdbx.dic _audit_conform.dict_version 5.416 _audit_conform.dict_location http://mmcif.pdb.org/dictionaries/ascii/mmcif_pdbx.dic # loop_ _database_2.database_id _database_2.database_code _database_2.pdbx_database_accession _database_2.pdbx_DOI PDB 1HR3 pdb_00001hr3 10.2210/pdb1hr3/pdb WWPDB D_1000173968 ? ? # 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 _pdbx_audit_revision_history.part_number 1 'Structure model' 1 0 1983-06-10 ? 2 'Structure model' 1 1 2008-03-03 ? 3 'Structure model' 1 2 2011-07-13 ? 4 'Structure model' 1 3 2017-11-29 ? 5 'Structure model' 1 4 2024-02-07 ? 6 'Structure model' 1 5 2026-08-12 ? # loop_ _pdbx_audit_revision_details.ordinal _pdbx_audit_revision_details.revision_ordinal _pdbx_audit_revision_details.data_content_type _pdbx_audit_revision_details.provider _pdbx_audit_revision_details.type _pdbx_audit_revision_details.description _pdbx_audit_revision_details.details 1 1 'Structure model' repository 'Initial release' ? ? 2 6 'Structure model' repository Remediation 'Metalloprotein remediation' ? # 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' 'Version format compliance' 3 4 'Structure model' 'Derived calculations' 4 4 'Structure model' Other 5 5 'Structure model' 'Data collection' 6 5 'Structure model' 'Database references' 7 6 'Structure model' 'Structure summary' # loop_ _pdbx_audit_revision_category.ordinal _pdbx_audit_revision_category.revision_ordinal _pdbx_audit_revision_category.data_content_type _pdbx_audit_revision_category.category 1 4 'Structure model' pdbx_database_status 2 4 'Structure model' struct_conf 3 4 'Structure model' struct_conf_type 4 5 'Structure model' chem_comp_atom 5 5 'Structure model' chem_comp_bond 6 5 'Structure model' database_2 7 6 'Structure model' pdbx_entry_details # loop_ _pdbx_audit_revision_item.ordinal _pdbx_audit_revision_item.revision_ordinal _pdbx_audit_revision_item.data_content_type _pdbx_audit_revision_item.item 1 4 'Structure model' '_pdbx_database_status.process_site' 2 5 'Structure model' '_database_2.pdbx_DOI' 3 5 'Structure model' '_database_2.pdbx_database_accession' 4 6 'Structure model' '_pdbx_entry_details.has_protein_modification' # _pdbx_database_status.status_code REL _pdbx_database_status.entry_id 1HR3 _pdbx_database_status.recvd_initial_deposition_date 1983-05-06 _pdbx_database_status.deposit_site ? _pdbx_database_status.process_site BNL _pdbx_database_status.SG_entry . _pdbx_database_status.pdb_format_compatible Y _pdbx_database_status.status_code_mr ? _pdbx_database_status.status_code_sf ? _pdbx_database_status.status_code_cs ? _pdbx_database_status.methods_development_category ? _pdbx_database_status.status_code_nmr_data ? # loop_ _audit_author.name _audit_author.pdbx_ordinal 'Smith, J.L.' 1 'Hendrickson, W.A.' 2 'Addison, A.W.' 3 # loop_ _citation.id _citation.title _citation.journal_abbrev _citation.journal_volume _citation.page_first _citation.page_last _citation.year _citation.journal_id_ASTM _citation.country _citation.journal_id_ISSN _citation.journal_id_CSD _citation.book_publisher _citation.pdbx_database_id_PubMed _citation.pdbx_database_id_DOI primary 'Structure of trimeric haemerythrin.' Nature 303 86 88 1983 NATUAS UK 0028-0836 0006 ? 6843663 10.1038/303086a0 1 'Chemistry of Phascolosoma Lurco Hemerythrin' Arch.Biochem.Biophys. 183 328 ? 1977 ABBIA4 US 0003-9861 0158 ? ? ? # loop_ _citation_author.citation_id _citation_author.name _citation_author.ordinal _citation_author.identifier_ORCID primary 'Smith, J.L.' 1 ? primary 'Hendrickson, W.A.' 2 ? primary 'Addison, A.W.' 3 ? 1 'Addison, A.W.' 4 ? 1 'Bruce, R.E.' 5 ? # loop_ _entity.id _entity.type _entity.src_method _entity.pdbx_description _entity.formula_weight _entity.pdbx_number_of_molecules _entity.pdbx_ec _entity.pdbx_mutation _entity.pdbx_fragment _entity.details 1 polymer man HEMERYTHRIN 10060.393 3 ? ? ? ? 2 non-polymer syn MONOAZIDO-MU-OXO-DIIRON 169.709 3 ? ? ? ? # _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 ;(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK)(UNK) (UNK)(UNK)(UNK)(UNK)(UNK)(UNK) ; _entity_poly.pdbx_seq_one_letter_code_can ;XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX ; _entity_poly.pdbx_strand_id A,B,C _entity_poly.pdbx_target_identifier ? # _pdbx_entity_nonpoly.entity_id 2 _pdbx_entity_nonpoly.name MONOAZIDO-MU-OXO-DIIRON _pdbx_entity_nonpoly.comp_id FEA # loop_ _entity_poly_seq.entity_id _entity_poly_seq.num _entity_poly_seq.mon_id _entity_poly_seq.hetero 1 1 UNK n 1 2 UNK n 1 3 UNK n 1 4 UNK n 1 5 UNK n 1 6 UNK n 1 7 UNK n 1 8 UNK n 1 9 UNK n 1 10 UNK n 1 11 UNK n 1 12 UNK n 1 13 UNK n 1 14 UNK n 1 15 UNK n 1 16 UNK n 1 17 UNK n 1 18 UNK n 1 19 UNK n 1 20 UNK n 1 21 UNK n 1 22 UNK n 1 23 UNK n 1 24 UNK n 1 25 UNK n 1 26 UNK n 1 27 UNK n 1 28 UNK n 1 29 UNK n 1 30 UNK n 1 31 UNK n 1 32 UNK n 1 33 UNK n 1 34 UNK n 1 35 UNK n 1 36 UNK n 1 37 UNK n 1 38 UNK n 1 39 UNK n 1 40 UNK n 1 41 UNK n 1 42 UNK n 1 43 UNK n 1 44 UNK n 1 45 UNK n 1 46 UNK n 1 47 UNK n 1 48 UNK n 1 49 UNK n 1 50 UNK n 1 51 UNK n 1 52 UNK n 1 53 UNK n 1 54 UNK n 1 55 UNK n 1 56 UNK n 1 57 UNK n 1 58 UNK n 1 59 UNK n 1 60 UNK n 1 61 UNK n 1 62 UNK n 1 63 UNK n 1 64 UNK n 1 65 UNK n 1 66 UNK n 1 67 UNK n 1 68 UNK n 1 69 UNK n 1 70 UNK n 1 71 UNK n 1 72 UNK n 1 73 UNK n 1 74 UNK n 1 75 UNK n 1 76 UNK n 1 77 UNK n 1 78 UNK n 1 79 UNK n 1 80 UNK n 1 81 UNK n 1 82 UNK n 1 83 UNK n 1 84 UNK n 1 85 UNK n 1 86 UNK n 1 87 UNK n 1 88 UNK n 1 89 UNK n 1 90 UNK n 1 91 UNK n 1 92 UNK n 1 93 UNK n 1 94 UNK n 1 95 UNK n 1 96 UNK n 1 97 UNK n 1 98 UNK n 1 99 UNK n 1 100 UNK n 1 101 UNK n 1 102 UNK n 1 103 UNK n 1 104 UNK n 1 105 UNK n 1 106 UNK n 1 107 UNK n 1 108 UNK n 1 109 UNK n 1 110 UNK n 1 111 UNK n 1 112 UNK n 1 113 UNK n 1 114 UNK n 1 115 UNK n 1 116 UNK n 1 117 UNK n 1 118 UNK n # _entity_src_gen.entity_id 1 _entity_src_gen.pdbx_src_id 1 _entity_src_gen.pdbx_alt_source_flag sample _entity_src_gen.pdbx_seq_type ? _entity_src_gen.pdbx_beg_seq_num ? _entity_src_gen.pdbx_end_seq_num ? _entity_src_gen.gene_src_common_name 'peanut worms' _entity_src_gen.gene_src_genus ? _entity_src_gen.pdbx_gene_src_gene ? _entity_src_gen.gene_src_species ? _entity_src_gen.gene_src_strain ? _entity_src_gen.gene_src_tissue ? _entity_src_gen.gene_src_tissue_fraction ? _entity_src_gen.gene_src_details ? _entity_src_gen.pdbx_gene_src_fragment ? _entity_src_gen.pdbx_gene_src_scientific_name Siphonosoma _entity_src_gen.pdbx_gene_src_ncbi_taxonomy_id 6443 _entity_src_gen.pdbx_gene_src_variant ? _entity_src_gen.pdbx_gene_src_cell_line ? _entity_src_gen.pdbx_gene_src_atcc ? _entity_src_gen.pdbx_gene_src_organ ? _entity_src_gen.pdbx_gene_src_organelle ? _entity_src_gen.pdbx_gene_src_cell ? _entity_src_gen.pdbx_gene_src_cellular_location ? _entity_src_gen.host_org_common_name ? _entity_src_gen.pdbx_host_org_scientific_name ? _entity_src_gen.pdbx_host_org_ncbi_taxonomy_id ? _entity_src_gen.host_org_genus ? _entity_src_gen.pdbx_host_org_gene ? _entity_src_gen.pdbx_host_org_organ ? _entity_src_gen.host_org_species ? _entity_src_gen.pdbx_host_org_tissue ? _entity_src_gen.pdbx_host_org_tissue_fraction ? _entity_src_gen.pdbx_host_org_strain ? _entity_src_gen.pdbx_host_org_variant ? _entity_src_gen.pdbx_host_org_cell_line ? _entity_src_gen.pdbx_host_org_atcc ? _entity_src_gen.pdbx_host_org_culture_collection ? _entity_src_gen.pdbx_host_org_cell ? _entity_src_gen.pdbx_host_org_organelle ? _entity_src_gen.pdbx_host_org_cellular_location ? _entity_src_gen.pdbx_host_org_vector_type ? _entity_src_gen.pdbx_host_org_vector ? _entity_src_gen.host_org_details ? _entity_src_gen.expression_system_id ? _entity_src_gen.plasmid_name ? _entity_src_gen.plasmid_details ? _entity_src_gen.pdbx_description ? # 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 FEA non-polymer . MONOAZIDO-MU-OXO-DIIRON ? 'Fe2 N3 O' 169.709 UNK 'L-peptide linking' . UNKNOWN ? 'C4 H9 N O2' 103.120 # 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 UNK 1 1 1 UNK UNK A . n A 1 2 UNK 2 2 2 UNK UNK A . n A 1 3 UNK 3 3 3 UNK UNK A . n A 1 4 UNK 4 4 4 UNK UNK A . n A 1 5 UNK 5 5 5 UNK UNK A . n A 1 6 UNK 6 6 6 UNK UNK A . n A 1 7 UNK 7 7 7 UNK UNK A . n A 1 8 UNK 8 8 8 UNK UNK A . n A 1 9 UNK 9 9 9 UNK UNK A . n A 1 10 UNK 10 10 10 UNK UNK A . n A 1 11 UNK 11 11 11 UNK UNK A . n A 1 12 UNK 12 12 12 UNK UNK A . n A 1 13 UNK 13 13 13 UNK UNK A . n A 1 14 UNK 14 14 14 UNK UNK A . n A 1 15 UNK 15 15 15 UNK UNK A . n A 1 16 UNK 16 16 16 UNK UNK A . n A 1 17 UNK 17 17 17 UNK UNK A . n A 1 18 UNK 18 18 18 UNK UNK A . n A 1 19 UNK 19 19 19 UNK UNK A . n A 1 20 UNK 20 20 20 UNK UNK A . n A 1 21 UNK 21 21 21 UNK UNK A . n A 1 22 UNK 22 22 22 UNK UNK A . n A 1 23 UNK 23 23 23 UNK UNK A . n A 1 24 UNK 24 24 24 UNK UNK A . n A 1 25 UNK 25 25 25 UNK UNK A . n A 1 26 UNK 26 26 26 UNK UNK A . n A 1 27 UNK 27 27 27 UNK UNK A . n A 1 28 UNK 28 28 28 UNK UNK A . n A 1 29 UNK 29 29 29 UNK UNK A . n A 1 30 UNK 30 30 30 UNK UNK A . n A 1 31 UNK 31 31 31 UNK UNK A . n A 1 32 UNK 32 32 32 UNK UNK A . n A 1 33 UNK 33 33 33 UNK UNK A . n A 1 34 UNK 34 34 34 UNK UNK A . n A 1 35 UNK 35 35 35 UNK UNK A . n A 1 36 UNK 36 36 36 UNK UNK A . n A 1 37 UNK 37 37 37 UNK UNK A . n A 1 38 UNK 38 38 38 UNK UNK A . n A 1 39 UNK 39 39 39 UNK UNK A . n A 1 40 UNK 40 40 40 UNK UNK A . n A 1 41 UNK 41 41 41 UNK UNK A . n A 1 42 UNK 42 42 42 UNK UNK A . n A 1 43 UNK 43 43 43 UNK UNK A . n A 1 44 UNK 44 44 44 UNK UNK A . n A 1 45 UNK 45 45 45 UNK UNK A . n A 1 46 UNK 46 46 46 UNK UNK A . n A 1 47 UNK 47 47 47 UNK UNK A . n A 1 48 UNK 48 48 48 UNK UNK A . n A 1 49 UNK 49 49 49 UNK UNK A . n A 1 50 UNK 50 50 50 UNK UNK A . n A 1 51 UNK 51 51 51 UNK UNK A . n A 1 52 UNK 52 52 52 UNK UNK A . n A 1 53 UNK 53 53 53 UNK UNK A . n A 1 54 UNK 54 54 54 UNK UNK A . n A 1 55 UNK 55 55 55 UNK UNK A . n A 1 56 UNK 56 56 56 UNK UNK A . n A 1 57 UNK 57 57 57 UNK UNK A . n A 1 58 UNK 58 58 58 UNK UNK A . n A 1 59 UNK 59 59 59 UNK UNK A . n A 1 60 UNK 60 60 60 UNK UNK A . n A 1 61 UNK 61 61 61 UNK UNK A . n A 1 62 UNK 62 62 62 UNK UNK A . n A 1 63 UNK 63 63 63 UNK UNK A . n A 1 64 UNK 64 64 64 UNK UNK A . n A 1 65 UNK 65 65 65 UNK UNK A . n A 1 66 UNK 66 66 66 UNK UNK A . n A 1 67 UNK 67 67 67 UNK UNK A . n A 1 68 UNK 68 68 68 UNK UNK A . n A 1 69 UNK 69 69 69 UNK UNK A . n A 1 70 UNK 70 70 70 UNK UNK A . n A 1 71 UNK 71 71 71 UNK UNK A . n A 1 72 UNK 72 72 72 UNK UNK A . n A 1 73 UNK 73 73 73 UNK UNK A . n A 1 74 UNK 74 74 74 UNK UNK A . n A 1 75 UNK 75 75 75 UNK UNK A . n A 1 76 UNK 76 76 76 UNK UNK A . n A 1 77 UNK 77 77 77 UNK UNK A . n A 1 78 UNK 78 78 78 UNK UNK A . n A 1 79 UNK 79 79 79 UNK UNK A . n A 1 80 UNK 80 80 80 UNK UNK A . n A 1 81 UNK 81 81 81 UNK UNK A . n A 1 82 UNK 82 82 82 UNK UNK A . n A 1 83 UNK 83 83 83 UNK UNK A . n A 1 84 UNK 84 84 84 UNK UNK A . n A 1 85 UNK 85 85 85 UNK UNK A . n A 1 86 UNK 86 86 86 UNK UNK A . n A 1 87 UNK 87 87 87 UNK UNK A . n A 1 88 UNK 88 88 88 UNK UNK A . n A 1 89 UNK 89 89 89 UNK UNK A . n A 1 90 UNK 90 90 90 UNK UNK A . n A 1 91 UNK 91 91 91 UNK UNK A . n A 1 92 UNK 92 92 92 UNK UNK A . n A 1 93 UNK 93 93 93 UNK UNK A . n A 1 94 UNK 94 94 94 UNK UNK A . n A 1 95 UNK 95 95 95 UNK UNK A . n A 1 96 UNK 96 96 96 UNK UNK A . n A 1 97 UNK 97 97 97 UNK UNK A . n A 1 98 UNK 98 98 98 UNK UNK A . n A 1 99 UNK 99 99 99 UNK UNK A . n A 1 100 UNK 100 100 100 UNK UNK A . n A 1 101 UNK 101 101 101 UNK UNK A . n A 1 102 UNK 102 102 102 UNK UNK A . n A 1 103 UNK 103 103 103 UNK UNK A . n A 1 104 UNK 104 104 104 UNK UNK A . n A 1 105 UNK 105 105 105 UNK UNK A . n A 1 106 UNK 106 106 106 UNK UNK A . n A 1 107 UNK 107 107 107 UNK UNK A . n A 1 108 UNK 108 108 108 UNK UNK A . n A 1 109 UNK 109 109 109 UNK UNK A . n A 1 110 UNK 110 110 110 UNK UNK A . n A 1 111 UNK 111 111 111 UNK UNK A . n A 1 112 UNK 112 112 112 UNK UNK A . n A 1 113 UNK 113 113 113 UNK UNK A . n A 1 114 UNK 114 114 114 UNK UNK A . n A 1 115 UNK 115 115 115 UNK UNK A . n A 1 116 UNK 116 116 116 UNK UNK A . n A 1 117 UNK 117 117 117 UNK UNK A . n A 1 118 UNK 118 118 118 UNK UNK A . n B 1 1 UNK 1 1 1 UNK UNK B . n B 1 2 UNK 2 2 2 UNK UNK B . n B 1 3 UNK 3 3 3 UNK UNK B . n B 1 4 UNK 4 4 4 UNK UNK B . n B 1 5 UNK 5 5 5 UNK UNK B . n B 1 6 UNK 6 6 6 UNK UNK B . n B 1 7 UNK 7 7 7 UNK UNK B . n B 1 8 UNK 8 8 8 UNK UNK B . n B 1 9 UNK 9 9 9 UNK UNK B . n B 1 10 UNK 10 10 10 UNK UNK B . n B 1 11 UNK 11 11 11 UNK UNK B . n B 1 12 UNK 12 12 12 UNK UNK B . n B 1 13 UNK 13 13 13 UNK UNK B . n B 1 14 UNK 14 14 14 UNK UNK B . n B 1 15 UNK 15 15 15 UNK UNK B . n B 1 16 UNK 16 16 16 UNK UNK B . n B 1 17 UNK 17 17 17 UNK UNK B . n B 1 18 UNK 18 18 18 UNK UNK B . n B 1 19 UNK 19 19 19 UNK UNK B . n B 1 20 UNK 20 20 20 UNK UNK B . n B 1 21 UNK 21 21 21 UNK UNK B . n B 1 22 UNK 22 22 22 UNK UNK B . n B 1 23 UNK 23 23 23 UNK UNK B . n B 1 24 UNK 24 24 24 UNK UNK B . n B 1 25 UNK 25 25 25 UNK UNK B . n B 1 26 UNK 26 26 26 UNK UNK B . n B 1 27 UNK 27 27 27 UNK UNK B . n B 1 28 UNK 28 28 28 UNK UNK B . n B 1 29 UNK 29 29 29 UNK UNK B . n B 1 30 UNK 30 30 30 UNK UNK B . n B 1 31 UNK 31 31 31 UNK UNK B . n B 1 32 UNK 32 32 32 UNK UNK B . n B 1 33 UNK 33 33 33 UNK UNK B . n B 1 34 UNK 34 34 34 UNK UNK B . n B 1 35 UNK 35 35 35 UNK UNK B . n B 1 36 UNK 36 36 36 UNK UNK B . n B 1 37 UNK 37 37 37 UNK UNK B . n B 1 38 UNK 38 38 38 UNK UNK B . n B 1 39 UNK 39 39 39 UNK UNK B . n B 1 40 UNK 40 40 40 UNK UNK B . n B 1 41 UNK 41 41 41 UNK UNK B . n B 1 42 UNK 42 42 42 UNK UNK B . n B 1 43 UNK 43 43 43 UNK UNK B . n B 1 44 UNK 44 44 44 UNK UNK B . n B 1 45 UNK 45 45 45 UNK UNK B . n B 1 46 UNK 46 46 46 UNK UNK B . n B 1 47 UNK 47 47 47 UNK UNK B . n B 1 48 UNK 48 48 48 UNK UNK B . n B 1 49 UNK 49 49 49 UNK UNK B . n B 1 50 UNK 50 50 50 UNK UNK B . n B 1 51 UNK 51 51 51 UNK UNK B . n B 1 52 UNK 52 52 52 UNK UNK B . n B 1 53 UNK 53 53 53 UNK UNK B . n B 1 54 UNK 54 54 54 UNK UNK B . n B 1 55 UNK 55 55 55 UNK UNK B . n B 1 56 UNK 56 56 56 UNK UNK B . n B 1 57 UNK 57 57 57 UNK UNK B . n B 1 58 UNK 58 58 58 UNK UNK B . n B 1 59 UNK 59 59 59 UNK UNK B . n B 1 60 UNK 60 60 60 UNK UNK B . n B 1 61 UNK 61 61 61 UNK UNK B . n B 1 62 UNK 62 62 62 UNK UNK B . n B 1 63 UNK 63 63 63 UNK UNK B . n B 1 64 UNK 64 64 64 UNK UNK B . n B 1 65 UNK 65 65 65 UNK UNK B . n B 1 66 UNK 66 66 66 UNK UNK B . n B 1 67 UNK 67 67 67 UNK UNK B . n B 1 68 UNK 68 68 68 UNK UNK B . n B 1 69 UNK 69 69 69 UNK UNK B . n B 1 70 UNK 70 70 70 UNK UNK B . n B 1 71 UNK 71 71 71 UNK UNK B . n B 1 72 UNK 72 72 72 UNK UNK B . n B 1 73 UNK 73 73 73 UNK UNK B . n B 1 74 UNK 74 74 74 UNK UNK B . n B 1 75 UNK 75 75 75 UNK UNK B . n B 1 76 UNK 76 76 76 UNK UNK B . n B 1 77 UNK 77 77 77 UNK UNK B . n B 1 78 UNK 78 78 78 UNK UNK B . n B 1 79 UNK 79 79 79 UNK UNK B . n B 1 80 UNK 80 80 80 UNK UNK B . n B 1 81 UNK 81 81 81 UNK UNK B . n B 1 82 UNK 82 82 82 UNK UNK B . n B 1 83 UNK 83 83 83 UNK UNK B . n B 1 84 UNK 84 84 84 UNK UNK B . n B 1 85 UNK 85 85 85 UNK UNK B . n B 1 86 UNK 86 86 86 UNK UNK B . n B 1 87 UNK 87 87 87 UNK UNK B . n B 1 88 UNK 88 88 88 UNK UNK B . n B 1 89 UNK 89 89 89 UNK UNK B . n B 1 90 UNK 90 90 90 UNK UNK B . n B 1 91 UNK 91 91 91 UNK UNK B . n B 1 92 UNK 92 92 92 UNK UNK B . n B 1 93 UNK 93 93 93 UNK UNK B . n B 1 94 UNK 94 94 94 UNK UNK B . n B 1 95 UNK 95 95 95 UNK UNK B . n B 1 96 UNK 96 96 96 UNK UNK B . n B 1 97 UNK 97 97 97 UNK UNK B . n B 1 98 UNK 98 98 98 UNK UNK B . n B 1 99 UNK 99 99 99 UNK UNK B . n B 1 100 UNK 100 100 100 UNK UNK B . n B 1 101 UNK 101 101 101 UNK UNK B . n B 1 102 UNK 102 102 102 UNK UNK B . n B 1 103 UNK 103 103 103 UNK UNK B . n B 1 104 UNK 104 104 104 UNK UNK B . n B 1 105 UNK 105 105 105 UNK UNK B . n B 1 106 UNK 106 106 106 UNK UNK B . n B 1 107 UNK 107 107 107 UNK UNK B . n B 1 108 UNK 108 108 108 UNK UNK B . n B 1 109 UNK 109 109 109 UNK UNK B . n B 1 110 UNK 110 110 110 UNK UNK B . n B 1 111 UNK 111 111 111 UNK UNK B . n B 1 112 UNK 112 112 112 UNK UNK B . n B 1 113 UNK 113 113 113 UNK UNK B . n B 1 114 UNK 114 114 114 UNK UNK B . n B 1 115 UNK 115 115 115 UNK UNK B . n B 1 116 UNK 116 116 116 UNK UNK B . n B 1 117 UNK 117 117 117 UNK UNK B . n B 1 118 UNK 118 118 118 UNK UNK B . n C 1 1 UNK 1 1 1 UNK UNK C . n C 1 2 UNK 2 2 2 UNK UNK C . n C 1 3 UNK 3 3 3 UNK UNK C . n C 1 4 UNK 4 4 4 UNK UNK C . n C 1 5 UNK 5 5 5 UNK UNK C . n C 1 6 UNK 6 6 6 UNK UNK C . n C 1 7 UNK 7 7 7 UNK UNK C . n C 1 8 UNK 8 8 8 UNK UNK C . n C 1 9 UNK 9 9 9 UNK UNK C . n C 1 10 UNK 10 10 10 UNK UNK C . n C 1 11 UNK 11 11 11 UNK UNK C . n C 1 12 UNK 12 12 12 UNK UNK C . n C 1 13 UNK 13 13 13 UNK UNK C . n C 1 14 UNK 14 14 14 UNK UNK C . n C 1 15 UNK 15 15 15 UNK UNK C . n C 1 16 UNK 16 16 16 UNK UNK C . n C 1 17 UNK 17 17 17 UNK UNK C . n C 1 18 UNK 18 18 18 UNK UNK C . n C 1 19 UNK 19 19 19 UNK UNK C . n C 1 20 UNK 20 20 20 UNK UNK C . n C 1 21 UNK 21 21 21 UNK UNK C . n C 1 22 UNK 22 22 22 UNK UNK C . n C 1 23 UNK 23 23 23 UNK UNK C . n C 1 24 UNK 24 24 24 UNK UNK C . n C 1 25 UNK 25 25 25 UNK UNK C . n C 1 26 UNK 26 26 26 UNK UNK C . n C 1 27 UNK 27 27 27 UNK UNK C . n C 1 28 UNK 28 28 28 UNK UNK C . n C 1 29 UNK 29 29 29 UNK UNK C . n C 1 30 UNK 30 30 30 UNK UNK C . n C 1 31 UNK 31 31 31 UNK UNK C . n C 1 32 UNK 32 32 32 UNK UNK C . n C 1 33 UNK 33 33 33 UNK UNK C . n C 1 34 UNK 34 34 34 UNK UNK C . n C 1 35 UNK 35 35 35 UNK UNK C . n C 1 36 UNK 36 36 36 UNK UNK C . n C 1 37 UNK 37 37 37 UNK UNK C . n C 1 38 UNK 38 38 38 UNK UNK C . n C 1 39 UNK 39 39 39 UNK UNK C . n C 1 40 UNK 40 40 40 UNK UNK C . n C 1 41 UNK 41 41 41 UNK UNK C . n C 1 42 UNK 42 42 42 UNK UNK C . n C 1 43 UNK 43 43 43 UNK UNK C . n C 1 44 UNK 44 44 44 UNK UNK C . n C 1 45 UNK 45 45 45 UNK UNK C . n C 1 46 UNK 46 46 46 UNK UNK C . n C 1 47 UNK 47 47 47 UNK UNK C . n C 1 48 UNK 48 48 48 UNK UNK C . n C 1 49 UNK 49 49 49 UNK UNK C . n C 1 50 UNK 50 50 50 UNK UNK C . n C 1 51 UNK 51 51 51 UNK UNK C . n C 1 52 UNK 52 52 52 UNK UNK C . n C 1 53 UNK 53 53 53 UNK UNK C . n C 1 54 UNK 54 54 54 UNK UNK C . n C 1 55 UNK 55 55 55 UNK UNK C . n C 1 56 UNK 56 56 56 UNK UNK C . n C 1 57 UNK 57 57 57 UNK UNK C . n C 1 58 UNK 58 58 58 UNK UNK C . n C 1 59 UNK 59 59 59 UNK UNK C . n C 1 60 UNK 60 60 60 UNK UNK C . n C 1 61 UNK 61 61 61 UNK UNK C . n C 1 62 UNK 62 62 62 UNK UNK C . n C 1 63 UNK 63 63 63 UNK UNK C . n C 1 64 UNK 64 64 64 UNK UNK C . n C 1 65 UNK 65 65 65 UNK UNK C . n C 1 66 UNK 66 66 66 UNK UNK C . n C 1 67 UNK 67 67 67 UNK UNK C . n C 1 68 UNK 68 68 68 UNK UNK C . n C 1 69 UNK 69 69 69 UNK UNK C . n C 1 70 UNK 70 70 70 UNK UNK C . n C 1 71 UNK 71 71 71 UNK UNK C . n C 1 72 UNK 72 72 72 UNK UNK C . n C 1 73 UNK 73 73 73 UNK UNK C . n C 1 74 UNK 74 74 74 UNK UNK C . n C 1 75 UNK 75 75 75 UNK UNK C . n C 1 76 UNK 76 76 76 UNK UNK C . n C 1 77 UNK 77 77 77 UNK UNK C . n C 1 78 UNK 78 78 78 UNK UNK C . n C 1 79 UNK 79 79 79 UNK UNK C . n C 1 80 UNK 80 80 80 UNK UNK C . n C 1 81 UNK 81 81 81 UNK UNK C . n C 1 82 UNK 82 82 82 UNK UNK C . n C 1 83 UNK 83 83 83 UNK UNK C . n C 1 84 UNK 84 84 84 UNK UNK C . n C 1 85 UNK 85 85 85 UNK UNK C . n C 1 86 UNK 86 86 86 UNK UNK C . n C 1 87 UNK 87 87 87 UNK UNK C . n C 1 88 UNK 88 88 88 UNK UNK C . n C 1 89 UNK 89 89 89 UNK UNK C . n C 1 90 UNK 90 90 90 UNK UNK C . n C 1 91 UNK 91 91 91 UNK UNK C . n C 1 92 UNK 92 92 92 UNK UNK C . n C 1 93 UNK 93 93 93 UNK UNK C . n C 1 94 UNK 94 94 94 UNK UNK C . n C 1 95 UNK 95 95 95 UNK UNK C . n C 1 96 UNK 96 96 96 UNK UNK C . n C 1 97 UNK 97 97 97 UNK UNK C . n C 1 98 UNK 98 98 98 UNK UNK C . n C 1 99 UNK 99 99 99 UNK UNK C . n C 1 100 UNK 100 100 100 UNK UNK C . n C 1 101 UNK 101 101 101 UNK UNK C . n C 1 102 UNK 102 102 102 UNK UNK C . n C 1 103 UNK 103 103 103 UNK UNK C . n C 1 104 UNK 104 104 104 UNK UNK C . n C 1 105 UNK 105 105 105 UNK UNK C . n C 1 106 UNK 106 106 106 UNK UNK C . n C 1 107 UNK 107 107 107 UNK UNK C . n C 1 108 UNK 108 108 108 UNK UNK C . n C 1 109 UNK 109 109 109 UNK UNK C . n C 1 110 UNK 110 110 110 UNK UNK C . n C 1 111 UNK 111 111 111 UNK UNK C . n C 1 112 UNK 112 112 112 UNK UNK C . n C 1 113 UNK 113 113 113 UNK UNK C . n C 1 114 UNK 114 114 114 UNK UNK C . n C 1 115 UNK 115 115 115 UNK UNK C . n C 1 116 UNK 116 116 116 UNK UNK C . n C 1 117 UNK 117 117 117 UNK UNK C . n C 1 118 UNK 118 118 118 UNK UNK C . n # loop_ _pdbx_nonpoly_scheme.asym_id _pdbx_nonpoly_scheme.entity_id _pdbx_nonpoly_scheme.mon_id _pdbx_nonpoly_scheme.ndb_seq_num _pdbx_nonpoly_scheme.pdb_seq_num _pdbx_nonpoly_scheme.auth_seq_num _pdbx_nonpoly_scheme.pdb_mon_id _pdbx_nonpoly_scheme.auth_mon_id _pdbx_nonpoly_scheme.pdb_strand_id _pdbx_nonpoly_scheme.pdb_ins_code D 2 FEA 1 119 1 FEA FEA A . E 2 FEA 1 119 1 FEA FEA B . F 2 FEA 1 119 1 FEA FEA C . # loop_ _pdbx_unobs_or_zero_occ_atoms.id _pdbx_unobs_or_zero_occ_atoms.PDB_model_num _pdbx_unobs_or_zero_occ_atoms.polymer_flag _pdbx_unobs_or_zero_occ_atoms.occupancy_flag _pdbx_unobs_or_zero_occ_atoms.auth_asym_id _pdbx_unobs_or_zero_occ_atoms.auth_comp_id _pdbx_unobs_or_zero_occ_atoms.auth_seq_id _pdbx_unobs_or_zero_occ_atoms.PDB_ins_code _pdbx_unobs_or_zero_occ_atoms.auth_atom_id _pdbx_unobs_or_zero_occ_atoms.label_alt_id _pdbx_unobs_or_zero_occ_atoms.label_asym_id _pdbx_unobs_or_zero_occ_atoms.label_comp_id _pdbx_unobs_or_zero_occ_atoms.label_seq_id _pdbx_unobs_or_zero_occ_atoms.label_atom_id 1 1 N 1 A FEA 119 ? O ? D FEA 1 O 2 1 N 1 A FEA 119 ? NA ? D FEA 1 NA 3 1 N 1 A FEA 119 ? NB ? D FEA 1 NB 4 1 N 1 A FEA 119 ? NC ? D FEA 1 NC 5 1 N 1 B FEA 119 ? O ? E FEA 1 O 6 1 N 1 B FEA 119 ? NA ? E FEA 1 NA 7 1 N 1 B FEA 119 ? NB ? E FEA 1 NB 8 1 N 1 B FEA 119 ? NC ? E FEA 1 NC 9 1 N 1 C FEA 119 ? O ? F FEA 1 O 10 1 N 1 C FEA 119 ? NA ? F FEA 1 NA 11 1 N 1 C FEA 119 ? NB ? F FEA 1 NB 12 1 N 1 C FEA 119 ? NC ? F FEA 1 NC # _cell.entry_id 1HR3 _cell.length_a 80.310 _cell.length_b 45.110 _cell.length_c 63.580 _cell.angle_alpha 90.00 _cell.angle_beta 104.80 _cell.angle_gamma 90.00 _cell.Z_PDB 6 _cell.pdbx_unique_axis ? # _symmetry.entry_id 1HR3 _symmetry.space_group_name_H-M 'P 1 21 1' _symmetry.pdbx_full_space_group_name_H-M ? _symmetry.cell_setting ? _symmetry.Int_Tables_number 4 # _exptl.entry_id 1HR3 _exptl.method 'X-RAY DIFFRACTION' _exptl.crystals_number ? # _exptl_crystal.id 1 _exptl_crystal.density_meas ? _exptl_crystal.density_Matthews 3.69 _exptl_crystal.density_percent_sol 66.66 _exptl_crystal.description ? # _diffrn.id 1 _diffrn.ambient_temp ? _diffrn.ambient_temp_details ? _diffrn.crystal_id 1 # _diffrn_radiation.diffrn_id 1 _diffrn_radiation.wavelength_id 1 _diffrn_radiation.pdbx_monochromatic_or_laue_m_l ? _diffrn_radiation.monochromator ? _diffrn_radiation.pdbx_diffrn_protocol ? _diffrn_radiation.pdbx_scattering_type x-ray # _diffrn_radiation_wavelength.id 1 _diffrn_radiation_wavelength.wavelength . _diffrn_radiation_wavelength.wt 1.0 # _refine.entry_id 1HR3 _refine.ls_number_reflns_obs ? _refine.ls_number_reflns_all ? _refine.pdbx_ls_sigma_I ? _refine.pdbx_ls_sigma_F ? _refine.pdbx_data_cutoff_high_absF ? _refine.pdbx_data_cutoff_low_absF ? _refine.pdbx_data_cutoff_high_rms_absF ? _refine.ls_d_res_low ? _refine.ls_d_res_high 5.5 _refine.ls_percent_reflns_obs ? _refine.ls_R_factor_obs ? _refine.ls_R_factor_all ? _refine.ls_R_factor_R_work ? _refine.ls_R_factor_R_free ? _refine.ls_R_factor_R_free_error ? _refine.ls_R_factor_R_free_error_details ? _refine.ls_percent_reflns_R_free ? _refine.ls_number_reflns_R_free ? _refine.ls_number_parameters ? _refine.ls_number_restraints ? _refine.occupancy_min ? _refine.occupancy_max ? _refine.B_iso_mean ? _refine.aniso_B[1][1] ? _refine.aniso_B[2][2] ? _refine.aniso_B[3][3] ? _refine.aniso_B[1][2] ? _refine.aniso_B[1][3] ? _refine.aniso_B[2][3] ? _refine.solvent_model_details ? _refine.solvent_model_param_ksol ? _refine.solvent_model_param_bsol ? _refine.pdbx_ls_cross_valid_method ? _refine.details ? _refine.pdbx_starting_model ? _refine.pdbx_method_to_determine_struct ? _refine.pdbx_isotropic_thermal_model ? _refine.pdbx_stereochemistry_target_values ? _refine.pdbx_stereochem_target_val_spec_case ? _refine.pdbx_R_Free_selection_details ? _refine.pdbx_overall_ESU_R ? _refine.pdbx_overall_ESU_R_Free ? _refine.overall_SU_ML ? _refine.overall_SU_B ? _refine.pdbx_refine_id 'X-RAY DIFFRACTION' _refine.pdbx_diffrn_id 1 _refine.pdbx_TLS_residual_ADP_flag ? _refine.correlation_coeff_Fo_to_Fc ? _refine.correlation_coeff_Fo_to_Fc_free ? _refine.pdbx_solvent_vdw_probe_radii ? _refine.pdbx_solvent_ion_probe_radii ? _refine.pdbx_solvent_shrinkage_radii ? _refine.pdbx_overall_phase_error ? _refine.overall_SU_R_Cruickshank_DPI ? _refine.pdbx_overall_SU_R_free_Cruickshank_DPI ? _refine.pdbx_overall_SU_R_Blow_DPI ? _refine.pdbx_overall_SU_R_free_Blow_DPI ? # _refine_hist.pdbx_refine_id 'X-RAY DIFFRACTION' _refine_hist.cycle_id LAST _refine_hist.pdbx_number_atoms_protein 354 _refine_hist.pdbx_number_atoms_nucleic_acid 0 _refine_hist.pdbx_number_atoms_ligand 6 _refine_hist.number_atoms_solvent 0 _refine_hist.number_atoms_total 360 _refine_hist.d_res_high 5.5 _refine_hist.d_res_low . # loop_ _struct_ncs_oper.id _struct_ncs_oper.code _struct_ncs_oper.details _struct_ncs_oper.matrix[1][1] _struct_ncs_oper.matrix[1][2] _struct_ncs_oper.matrix[1][3] _struct_ncs_oper.matrix[2][1] _struct_ncs_oper.matrix[2][2] _struct_ncs_oper.matrix[2][3] _struct_ncs_oper.matrix[3][1] _struct_ncs_oper.matrix[3][2] _struct_ncs_oper.matrix[3][3] _struct_ncs_oper.vector[1] _struct_ncs_oper.vector[2] _struct_ncs_oper.vector[3] 1 given ? -.033090 .590940 -.806040 .785320 .514220 .344730 .618210 -.621590 -.481090 15.42000 -4.91000 40.70000 2 given ? -.033090 .785320 .618210 .590940 .514220 -.621590 -.806040 .344760 -.481090 -20.79000 18.71000 33.70000 # _database_PDB_matrix.entry_id 1HR3 _database_PDB_matrix.origx[1][1] 1.000000 _database_PDB_matrix.origx[1][2] 0.000000 _database_PDB_matrix.origx[1][3] 0.000000 _database_PDB_matrix.origx[2][1] 0.000000 _database_PDB_matrix.origx[2][2] 1.000000 _database_PDB_matrix.origx[2][3] 0.000000 _database_PDB_matrix.origx[3][1] 0.000000 _database_PDB_matrix.origx[3][2] 0.000000 _database_PDB_matrix.origx[3][3] 1.000000 _database_PDB_matrix.origx_vector[1] 0.00000 _database_PDB_matrix.origx_vector[2] 0.00000 _database_PDB_matrix.origx_vector[3] 0.00000 # _struct.entry_id 1HR3 _struct.title 'STRUCTURE OF TRIMERIC HAEMERYTHRIN' _struct.pdbx_model_details ? _struct.pdbx_CASP_flag ? _struct.pdbx_model_type_details ? # _struct_keywords.entry_id 1HR3 _struct_keywords.pdbx_keywords 'OXYGEN TRANSPORT PROTEIN' _struct_keywords.text 'OXYGEN TRANSPORT PROTEIN' # loop_ _struct_asym.id _struct_asym.pdbx_blank_PDB_chainid_flag _struct_asym.pdbx_modified _struct_asym.entity_id _struct_asym.details A N N 1 ? B N N 1 ? C N N 1 ? D N N 2 ? E N N 2 ? F N N 2 ? # _struct_ref.id 1 _struct_ref.entity_id 1 _struct_ref.db_name PDB _struct_ref.db_code 1HR3 _struct_ref.pdbx_db_accession 1HR3 _struct_ref.pdbx_db_isoform ? _struct_ref.pdbx_seq_one_letter_code ? _struct_ref.pdbx_align_begin ? # loop_ _struct_ref_seq.align_id _struct_ref_seq.ref_id _struct_ref_seq.pdbx_PDB_id_code _struct_ref_seq.pdbx_strand_id _struct_ref_seq.seq_align_beg _struct_ref_seq.pdbx_seq_align_beg_ins_code _struct_ref_seq.seq_align_end _struct_ref_seq.pdbx_seq_align_end_ins_code _struct_ref_seq.pdbx_db_accession _struct_ref_seq.db_align_beg _struct_ref_seq.pdbx_db_align_beg_ins_code _struct_ref_seq.db_align_end _struct_ref_seq.pdbx_db_align_end_ins_code _struct_ref_seq.pdbx_auth_seq_align_beg _struct_ref_seq.pdbx_auth_seq_align_end 1 1 1HR3 A 1 ? 118 ? 1HR3 1 ? 118 ? 1 118 2 1 1HR3 B 1 ? 118 ? 1HR3 1 ? 118 ? 1 118 3 1 1HR3 C 1 ? 118 ? 1HR3 1 ? 118 ? 1 118 # _pdbx_struct_assembly.id 1 _pdbx_struct_assembly.details author_defined_assembly _pdbx_struct_assembly.method_details ? _pdbx_struct_assembly.oligomeric_details trimeric _pdbx_struct_assembly.oligomeric_count 3 # _pdbx_struct_assembly_gen.assembly_id 1 _pdbx_struct_assembly_gen.oper_expression 1 _pdbx_struct_assembly_gen.asym_id_list A,B,C,D,E,F # _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 # _struct_biol.id 1 _struct_biol.details ;APPLYING THE TRANSFORMATION GIVEN ON THE MTRIX 1 RECORDS BELOW TO SUBUNIT 1 (CHAIN IDENTIFIER A) WILL YIELD APPROXIMATE COORDINATES FOR SUBUNIT 2 (CHAIN IDENTIFIER B). FOR THIS TRANSFORMATION PHI=11.37, PSI=34.69, CHI=120.00, WHERE PHI, PSI, CHI FOLLOW THE CONVENTION OF M.G.ROSSMANN AND D.M.BLOW (ACTA CRYSTALLOGR., V. 15, P. 24 (1962)). APPLYING THE TRANSFORMATION GIVEN ON THE MTRIX 2 RECORDS BELOW TO SUBUNIT 1 (CHAIN IDENTIFIER A) WILL YIELD APPROXIMATE COORDINATES FOR SUBUNIT 3 (CHAIN IDENTIFIER C). FOR THIS TRANSFORMATION PHI=11.37, PSI=34.69, CHI=-120.00. ; _struct_biol.pdbx_parent_biol_id ? # loop_ _struct_conf.conf_type_id _struct_conf.id _struct_conf.pdbx_PDB_helix_id _struct_conf.beg_label_comp_id _struct_conf.beg_label_asym_id _struct_conf.beg_label_seq_id _struct_conf.pdbx_beg_PDB_ins_code _struct_conf.end_label_comp_id _struct_conf.end_label_asym_id _struct_conf.end_label_seq_id _struct_conf.pdbx_end_PDB_ins_code _struct_conf.beg_auth_comp_id _struct_conf.beg_auth_asym_id _struct_conf.beg_auth_seq_id _struct_conf.end_auth_comp_id _struct_conf.end_auth_asym_id _struct_conf.end_auth_seq_id _struct_conf.pdbx_PDB_helix_class _struct_conf.details _struct_conf.pdbx_PDB_helix_length HELX_P HELX_P1 AA UNK A 19 ? UNK A 37 ? UNK A 19 UNK A 37 1 ? 19 HELX_P HELX_P2 BA UNK A 41 ? UNK A 64 ? UNK A 41 UNK A 64 1 ? 24 HELX_P HELX_P3 CA UNK A 71 ? UNK A 84 ? UNK A 71 UNK A 84 1 ? 14 HELX_P HELX_P4 DA UNK A 93 ? UNK A 111 ? UNK A 93 UNK A 111 1 'LAST TURN MAY BE PI HELIX' 19 HELX_P HELX_P5 AB UNK B 19 ? UNK B 37 ? UNK B 19 UNK B 37 1 ? 19 HELX_P HELX_P6 BB UNK B 41 ? UNK B 64 ? UNK B 41 UNK B 64 1 ? 24 HELX_P HELX_P7 CB UNK B 71 ? UNK B 84 ? UNK B 71 UNK B 84 1 ? 14 HELX_P HELX_P8 DB UNK B 93 ? UNK B 111 ? UNK B 93 UNK B 111 1 'LAST TURN MAY BE PI HELIX' 19 HELX_P HELX_P9 AC UNK C 19 ? UNK C 37 ? UNK C 19 UNK C 37 1 ? 19 HELX_P HELX_P10 BC UNK C 41 ? UNK C 64 ? UNK C 41 UNK C 64 1 ? 24 HELX_P HELX_P11 CC UNK C 71 ? UNK C 84 ? UNK C 71 UNK C 84 1 ? 14 HELX_P HELX_P12 DC UNK C 93 ? UNK C 111 ? UNK C 93 UNK C 111 1 'LAST TURN MAY BE PI HELIX' 19 # _struct_conf_type.id HELX_P _struct_conf_type.criteria ? _struct_conf_type.reference ? # _pdbx_entry_details.entry_id 1HR3 _pdbx_entry_details.compound_details ? _pdbx_entry_details.source_details ? _pdbx_entry_details.nonpolymer_details ;BECAUSE THIS IS A CA COORDINATE SET, THE CONNECTIVITY OF THE IRON ATOMS OF FEA CANNOT BE SPECIFIED ON CONECT RECORDS. THE CONNECTIVITY IS AS FOLLOWS FE1 NE2 HIS 73 NE2 HIS 77 NE2 HIS 106 OE1 GLU 58 OD1 ASP 111 0 FEA 1 FE2 NE2 HIS 25 NE2 HIS 54 OE2 GLU 58 OD2 ASP 111 O FEA 1 N1 FEA 1 ; _pdbx_entry_details.sequence_details ? _pdbx_entry_details.has_ligand_of_interest ? _pdbx_entry_details.has_protein_modification N # loop_ _chem_comp_atom.comp_id _chem_comp_atom.atom_id _chem_comp_atom.type_symbol _chem_comp_atom.pdbx_aromatic_flag _chem_comp_atom.pdbx_stereo_config _chem_comp_atom.pdbx_ordinal FEA FE1 FE N N 1 FEA FE2 FE N N 2 FEA O O N N 3 FEA NA N N N 4 FEA NB N N N 5 FEA NC N N N 6 # loop_ _chem_comp_bond.comp_id _chem_comp_bond.atom_id_1 _chem_comp_bond.atom_id_2 _chem_comp_bond.value_order _chem_comp_bond.pdbx_aromatic_flag _chem_comp_bond.pdbx_stereo_config _chem_comp_bond.pdbx_ordinal FEA FE1 O sing N N 1 FEA FE2 O sing N N 2 FEA FE2 NA sing N N 3 FEA NA NB doub N N 4 FEA NB NC doub N N 5 # loop_ _pdbx_coordinate_model.asym_id _pdbx_coordinate_model.type A 'CA ATOMS ONLY' B 'CA ATOMS ONLY' C 'CA ATOMS ONLY' # _atom_sites.entry_id 1HR3 _atom_sites.fract_transf_matrix[1][1] .012448 _atom_sites.fract_transf_matrix[1][2] 0.000000 _atom_sites.fract_transf_matrix[1][3] .003290 _atom_sites.fract_transf_matrix[2][1] 0.000000 _atom_sites.fract_transf_matrix[2][2] .022168 _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] .016268 _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_sites_footnote.id _atom_sites_footnote.text 1 'RESIDUES 7 AND 90 ARE CIS-PROLINES' 2 'FEA IS MONOAZIDO-MU-OXO-DIIRON. ONLY THE COORDINATES FOR THE TWO IRON ATOMS ARE PRESENT IN THIS ENTRY. SEE REMARK 7.' # loop_ _atom_type.symbol C FE # loop_ #