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Class: Mainly Alpha (13335)
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Architecture: Up-down Bundle (3216)
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Topology: Ferritin; (180)
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Homologous Superfamily: [code=1.20.1260.10, no name defined] (180)
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7 (Sulfolobus tokodaii str) (1)
1J30A:3-143; B:3-139THE CRYSTAL STRUCTURE OF SULERYTHRIN, A RUBRERYTHRIN-LIKE PROTEIN FROM A STRICTLY AEROBIC AND THERMOACIDIPHILIC ARCHAEON
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Agrobacterium tumefaciens. Organism_taxid: 358. Strain: gv3101. (1)
1O9RA:1-162; B:1-162; E:1-162; F:1-162; D:3-162; C:4-162THE X-RAY CRYSTAL STRUCTURE OF AGROBACTERIUM TUMEFACIENS DPS, A MEMBER OF THE FAMILY THAT PROTECT DNA WITHOUT BINDING
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Ames (Bacillus anthracis str) (1)
2QQYA:2-139CRYSTAL STRUCTURE OF FERRITIN LIKE, DIIRON-CARBOXYLATE PROTEINS FROM BACILLUS ANTHRACIS STR. AMES
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Archaeoglobus fulgidus dsm 4304. Organism_taxid: 224325. Strain: dsm 4304. (1)
1SQ3A:3-164; B:3-164; K:3-164; L:3-164; C:3-164; D:3-164; E:3-164; F:3-164; G:3-164; H:3-164; I:3-164; J:3-164CRYSTAL STRUCTURES OF A NOVEL OPEN PORE FERRITIN FROM THE HYPERTHERMOPHILIC ARCHAEON ARCHAEOGLOBUS FULGIDUS.
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Archaeoglobus fulgidus. Organism_taxid: 2234. (1)
1S3QG:2-164; J:2-164; K:3-164; L:3-164; A:3-164; B:3-164; C:3-164; D:3-164; E:3-164; F:3-164; H:3-164; I:3-164CRYSTAL STRUCTURES OF A NOVEL OPEN PORE FERRITIN FROM THE HYPERTHERMOPHILIC ARCHAEON ARCHAEOGLOBUS FULGIDUS
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Aureus col (Staphylococcus aureus subsp) (1)
2D5KB:2-150; A:3-150; C:2-148; D:2-148CRYSTAL STRUCTURE OF DPS FROM STAPHYLOCOCCUS AUREUS
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Azotobacter vinelandii. Organism_taxid: 354 (1)
2FL0A:1-155; B:1-155; C:1-155; D:1-155; E:1-155; F:1-155; G:1-155; H:1-155OXIDIZED (ALL FERRIC) FORM OF THE AZOTOBACTER VINELANDII BACTERIOFERRITIN
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Azotobacter vinelandii. Organism_taxid: 354. Strain: uw3 (2)
1SOFA:1-155; C:1-155; D:1-155; E:1-155; F:1-155; G:1-155; H:1-155; B:1-155CRYSTAL STRUCTURE OF THE AZOTOBACTER VINELANDII BACTERIOFERRITIN AT 2.6 A RESOLUTION
2FKZA:1-155; B:1-155; C:1-155; D:1-155; E:1-155; F:1-155; G:1-155; H:1-155REDUCED (ALL FERROUS) FORM OF THE AZOTOBACTER VINELANDII BACTERIOFERRITIN
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Bacillus anthracis. Organism_taxid: 1392. (2)
1JI5A:4-145; B:4-145; C:4-145; D:4-145DLP-1 FROM BACILLUS ANTHRACIS
1JIGA:2-147; B:2-147; C:2-147; D:2-147DLP-2 FROM BACILLUS ANTHRACIS
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Bacillus halodurans c-125. Organism_taxid: 272558. Strain: c-125, dsm18197, ferm 7344, jcm 9153. (1)
2RBDA:7-156; B:10-156CRYSTAL STRUCTURE OF A PUTATIVE SPORE COAT PROTEIN (BH2358) FROM BACILLUS HALODURANS C-125 AT 1.54 A RESOLUTION
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Bacillus subtilis. Organism_taxid: 1423. Strain: 168. (1)
2CHPA:6-153; B:7-153; C:9-153; D:9-153CRYSTAL STRUCTURE OF THE DODECAMERIC FERRITIN MRGA FROM B. SUBTILIS 168
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Brevibacillus brevis. Organism_taxid: 1393 (1)
1N1QA:1-149; B:1-149; C:4-149; D:6-149CRYSTAL STRUCTURE OF A DPS PROTEIN FROM BACILLUS BREVIS
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Brucella melitensis biovar abortus 2308. Organism_taxid: 359391. Strain: biovar abortus 2308. (1)
3FVBA:-1-159; B:-1-159CRYSTAL STRUCTURE OF FERRITIN (BACTERIOFERRITIN) FROM BRUCELLA MELITENSIS
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Brucella melitensis. Organism_taxid: 29459. Strain: 1719b. (1)
3GE4A:6-166; B:6-166; K:6-166; L:6-166; C:6-166; D:6-166; E:6-166; F:6-166; G:6-166; H:6-166; I:6-166; J:6-166CRYSTAL STRUCTURE OF FERRITIN:DNA-BINDING PROTEIN DPS FROM BRUCELLA MELITENSIS
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Bullfrog (Rana catesbeiana) (7)
1BG7A:1-173LOCALIZED UNFOLDING AT THE JUNCTION OF THREE FERRITIN SUBUNITS. A MECHANISM FOR IRON RELEASE?
1MFRA:1-171; J:1-171; K:1-171; L:1-171; M:1-171; N:1-171; O:1-171; P:1-171; Q:1-171; R:1-171; S:1-171; B:1-171; T:1-171; U:1-171; V:1-171; W:1-171; X:1-171; C:1-171; D:1-171; E:1-171; F:1-171; G:1-171; H:1-171; I:1-171CRYSTAL STRUCTURE OF M FERRITIN
1RCCA:2-172BULLFROG RED CELL L FERRITIN TARTRATE/MG/PH 5.5
1RCDA:2-172BULLFROG RED CELL L FERRITIN TARTRATE/MG/PH 5.5
1RCEA:2-172BULLFROG RED CELL L FERRITIN SULFATE/MN/PH 6.3
1RCGA:2-172BULLFROG RED CELL L FERRITIN SULFATE/MN/PH 6.3
1RCIA:2-172BULLFROG RED CELL L FERRITIN TARTRATE/MG/PH 5.5
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Campylobacter jejuni. Organism_taxid: 192222. Strain: nctc 11168. (1)
3KWOA:-1-147; D:0-147; B:2-147; C:2-147CRYSTAL STRUCTURE OF PUTATIVE BACTERIOFERRITIN FROM CAMPYLOBACTER JEJUNI
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Campylobacter jejuni. Organism_taxid: 197. (1)
1KRQA:1-165CRYSTAL STRUCTURE ANALYSIS OF CAMPYLOBACTER JEJUNI FERRITIN
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Campylobacter pylori j99 (Helicobacter pylori j99) (1)
3EGMA:-5-166; B:-5-166; C:-5-166; D:-5-166; E:-5-166; F:-5-166STRUCTURAL BASIS OF IRON TRANSPORT GATING IN HELICOBACTER PYLORI FERRITIN
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Deinococcus radiodurans r1. Organism_taxid: 243230. Strain: r1 / dsm 20539 / ifo 15346 / lmg 4051 / ncib 9279. (1)
3BT5A:27-179CRYSTAL STRUCTURE OF DUF305 FRAGMENT FROM DEINOCOCCUS RADIODURANS
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Desulfovibrio desulfuricans. Organism_taxid: 876. Strain: atcc 27774 (3)
1NF4A:4-172; B:4-172; C:4-172; D:4-172; E:4-172; F:4-172; G:4-172; J:4-172; K:4-172; N:4-172; O:4-172; H:3-172; I:3-172; L:3-172; M:3-172; P:3-172X-RAY STRUCTURE OF THE DESULFOVIBRIO DESULFURICANS BACTERIOFERRITIN: THE DIIRON SITE IN DIFFERENT STATES (REDUCED STRUCTURE)
1NF6G:4-172; K:4-172; M:4-172; O:5-173; A:3-172; B:3-172; C:3-172; D:3-172; E:3-172; H:3-172; I:3-172; J:3-172; L:3-172; N:3-172; P:3-172; F:2-172X-RAY STRUCTURE OF THE DESULFOVIBRIO DESULFURICANS BACTERIOFERRITIN: THE DIIRON SITE IN DIFFERENT CATALYTIC STATES ("CYCLED" STRUCTURE: REDUCED IN SOLUTION AND ALLOWED TO REOXIDISE BEFORE CRYSTALLISATION)
1NFVA:4-172; G:4-172; J:3-172; K:3-172; L:3-172; M:3-172; N:3-172; P:3-172; O:4-172; B:3-172; C:3-172; D:3-172; E:3-172; F:3-172; H:3-172; I:3-172X-RAY STRUCTURE OF DESULFOVIBRIO DESULFURICANS BACTERIOFERRITIN: THE DIIRON CENTRE IN DIFFERENT CATALYTIC STATES (AS-ISOLATED STRUCTURE)
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Desulfovibrio vulgaris. Organism_taxid: 881 (1)
1JYBA:2-146CRYSTAL STRUCTURE OF RUBRERYTHRIN
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Desulfovibrio vulgaris. Organism_taxid: 881. (5)
1LKMA:2-146CRYSTAL STRUCTURE OF DESULFOVIBRIO VULGARIS RUBRERYTHRIN ALL-IRON(III) FORM
1LKOA:2-146CRYSTAL STRUCTURE OF DESULFOVIBRIO VULGARIS RUBRERYTHRIN ALL-IRON(II) FORM
1LKPA:2-146CRYSTAL STRUCTURE OF DESULFOVIBRIO VULGARIS RUBRERYTHRIN ALL-IRON(II) FORM, AZIDE ADDUCT
1S2ZA:2-146X-RAY CRYSTAL STRUCTURE OF DESULFOVIBRIO VULGARIS RUBRERYTHRIN WITH DISPLACEMENT OF IRON BY ZINC AT THE DIIRON SITE
1S30A:2-146X-RAY CRYSTAL STRUCTURE OF DESULFOVIBRIO VULGARIS RUBRERYTHRIN WITH DISPLACEMENT OF IRON BY ZINC AT THE DIIRON SITE
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Domestic horse,equine (Equus caballus) (8)
3F32A:2-171HORSE SPLEEN APOFERRITIN
3F33A:2-171APOFERRITIN: COMPLEX WITH PROPOFOL
3F34A:2-171APOFERRITIN: COMPLEX WITH 2,6-DIETHYLPHENOL
3F35A:2-171APOFERRITIN: COMPLEX WITH 2,6-DIETHYLPHENOL
3F36A:2-171APOFERRITIN: COMPLEX WITH 2-ISOPROPYLPHENOL
3F37A:2-171APOFERRITIN: COMPLEX WITH 2,6-DIMETHYLPHENOL
3F38A:2-171APOFERRITIN: COMPLEX WITH 2,6-DIMETHYLPHENOL
3F39A:2-171APOFERRITIN: COMPLEX WITH PHENOL
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Escherichia coli bl21. Organism_taxid: 511693. Strain: bl21 (1)
2HTNA:1-158; B:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158E. COLI BACTERIOFERRITIN IN ITS AS-ISOLATED FORM
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Escherichia coli k-12. Organism_taxid: 83333. (1)
3GHQA:1-158; B:1-158; K:1-158; L:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158CRYSTAL STRUCTURE OF E. COLI W35F BFR MUTANT
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Escherichia coli k12. Organism_taxid: 83333. Strain: k-12. (1)
3E1JA:1-158; B:1-158; K:1-158; L:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158CRYSTAL STRUCTURE OF E. COLI BACTERIOFERRITIN (BFR) WITH AN UNOCCUPIED FERROXIDASE CENTRE (APO-BFR).
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Escherichia coli k12. Organism_taxid: 83333. Strain: k12. (1)
1OTKA:1-244; B:1-244STRUCTURAL GENOMICS, PROTEIN PAAC
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Escherichia coli. Organism_taxid: 511693. Strain: bl21 (1)
2VXIA:1-157; B:1-157; K:1-157; L:1-157; C:1-157; D:1-157; E:1-157; F:1-157; G:1-157; H:1-157; I:1-157; J:1-157THE BINDING OF HEME AND ZINC IN ESCHERICHIA COLI BACTERIOFERRITIN
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Escherichia coli. Organism_taxid: 562 (2)
1BCFA:1-158; B:1-158; K:1-158; L:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158THE STRUCTURE OF A UNIQUE, TWO-FOLD SYMMETRIC, HAEM-BINDING SITE
1BFRA:1-158; B:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158; K:1-158; L:1-158; M:1-158; N:1-158; O:1-158; P:1-158; Q:1-158; R:1-158; S:1-158; T:1-158; U:1-158; V:1-158; W:1-158; X:1-158IRON STORAGE AND ELECTRON TRANSPORT
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Escherichia coli. Organism_taxid: 562. (3)
1F30A:12-167; B:12-167; C:12-167; D:12-167; E:12-167; F:12-167; G:12-167; H:12-167; I:12-167; J:12-167; K:12-167; L:12-167THE STRUCTURAL BASIS FOR DNA PROTECTION BY E. COLI DPS PROTEIN
1F33F:9-167; I:9-167; K:12-167; L:12-167; A:12-167; B:12-167; C:12-167; D:12-167; E:12-167; G:12-167; H:12-167; J:12-167THE STRUCTURAL BASIS FOR DNA PROTECTION BY E. COLI DPS PROTEIN
1JTSJ:10-167; U:11-167; E:12-167; M:12-167; N:12-167; O:12-167; R:12-167; S:12-167; T:12-167; W:12-167; X:12-167; A:13-167; B:13-167; F:13-167; G:13-167; L:13-167; V:13-167; C:14-167; D:14-167; H:14-167; I:14-167; K:14-167; P:14-167; Q:14-167DNA PROTECTION AND BINDING BY E. COLI DPS PROTEIN
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Escherichia coli. Organism_taxid: 562. (4)
1EUMA:2-162; B:2-162; C:2-162; D:2-162; E:2-162; F:2-162CRYSTAL STRUCTURE OF THE E.COLI FERRITIN ECFTNA
1JREA:11-167; B:11-167; K:13-167; L:13-167; D:11-167; H:11-167; E:12-167; F:12-167; I:12-167; C:13-167; G:13-167; J:13-167DNA PROTECTION AND BINDING BY E. COLI DPS PROTEIN
1L8HC:10-167; A:12-167; E:12-167; G:12-167; H:12-167; I:12-167; J:12-167; D:13-167; K:13-167; B:14-167; F:14-167; L:14-167DNA PROTECTION AND BINDING BY E. COLI DPS PROTEIN
1L8IF:11-167; J:11-167; A:12-167; B:12-167; D:12-167; E:12-167; I:12-167; K:12-167; L:12-167; C:13-167; G:13-167; H:13-167DNA PROTECTION AND BINDING BY E. COLI DPS PROTEIN
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Escherichia coli. Organism_taxid: 562. Strain: k-12 mg1655. (1)
2GS4A:4-161; B:4-157THE CRYSTAL STRUCTURE OF THE E.COLI STRESS PROTEIN YCIF.
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Escherichia coli. Organism_taxid: 562. Strain: zk126 dps::kan. (1)
1DPSA:9-167; D:12-167; K:14-167; L:14-167; B:14-167; C:14-167; E:14-167; F:14-167; G:14-167; H:14-167; I:14-167; J:14-167THE CRYSTAL STRUCTURE OF DPS, A FERRITIN HOMOLOG THAT BINDS AND PROTECTS DNA
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Escherichia coli. Organism_taxid: 83333. Strain: k-12. (7)
3E1LA:1-158; B:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158; K:1-158; L:1-158CRYSTAL STRUCTURE OF E. COLI BACTERIOFERRITIN (BFR) SOAKED IN PHOSPHATE WITH AN ALTERNATIVE CONFORMATION OF THE UNOCCUPIED FERROXIDASE CENTRE (APO-BFR II).
3E1MA:1-158; B:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158; K:1-158; L:1-158CRYSTAL STRUCTURE OF E. COLI BACTERIOFERRITIN (BFR) OBTAINED AFTER SOAKING APO-BFR CRYSTALS FOR 2.5 MINUTES IN FE2+ (2.5M FE(II)-BFR)
3E1NA:1-156; B:1-156; C:1-156; D:1-156; E:1-156; F:1-156; G:1-156; H:1-156; I:1-156; J:1-156; K:1-156; L:1-156CRYSTAL STRUCTURE OF E. COLI BACTERIOFERRITIN (BFR) AFTER A 65 MINUTE (AEROBIC) EXPOSURE TO FE(II) REVEALING A POSSIBLE MU-OXO BRIDGE/MU-HYDROXY BRIDGED DIIRON INTERMEDIATE AT THE FERROXIDASE CENTRE. (FE(III)-O-FE(III)-BFR).
3E1OA:1-156; B:1-156; C:1-156; D:1-156; E:1-156; F:1-156; G:1-156; H:1-156; I:1-156; J:1-156; K:1-156; L:1-156CRYSTAL STRUCTURE OF E. COLI BACTERIOFERRITIN (BFR) WITH TWO ZN(II) ION SITES AT THE FERROXIDASE CENTRE (ZN-BFR).
3E1PA:1-158; I:1-158; J:1-158; K:1-158; L:1-158; B:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158CRYSTAL STRUCTURE OF E. COLI BACTERIOFERRITIN (BFR) IN WHICH THE FERROXIDASE CENTRE IS INHIBITED WITH ZN(II) AND HIGH OCCUPANCY IRON IS BOUND WITHIN THE CAVITY.
3E1QA:1-158; B:1-158; C:1-158; D:1-158; E:1-158; F:1-158; G:1-158; H:1-158; I:1-158; J:1-158; K:1-158; L:1-158CRYSTAL STRUCTURE OF W133F VARIANT E. COLI BACTERIOFERRITN WITH IRON.
3E2CA:1-158; B:1-158ESCHERICHIA COLI BACTERIOFERRITIN MUTANT E128R/E135R
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Halobacterium salinarum. Organism_taxid: 2242. Strain: tom (4)
1MOJB:7-181; C:7-181; D:7-181; A:2-181CRYSTAL STRUCTURE OF AN ARCHAEAL DPS-HOMOLOGUE FROM HALOBACTERIUM SALINARUM
1TK6B:7-181; A:2-181; C:7-181; D:7-181IRON-OXO CLUSTERS BIOMINERALIZING ON PROTEIN SURFACES. STRUCTURAL ANALYSIS OF H.SALINARUM DPSA IN ITS LOW AND HIGH IRON STATES
1TKOB:7-181; C:7-181; D:7-181; A:2-181IRON-OXO CLUSTERS BIOMINERALIZING ON PROTEIN SURFACES. STRUCTURAL ANALYSIS OF H.SALINARUM DPSA IN ITS LOW AND HIGH IRON STATES
1TKPB:7-181; A:2-181; C:7-181; D:7-181IRON-OXO CLUSTERS BIOMINERALIZING ON PROTEIN SURFACES. STRUCTURAL ANALYSIS OF H.SALINARUM DPSA IN ITS LOW AND HIGH IRON STATES
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Halobacterium salinarum. Organism_taxid: 2242. Strain: wildtype strain- tom (1)
1TJOB:7-181; C:7-181; D:7-181; A:2-181IRON-OXO CLUSTERS BIOMINERALIZING ON PROTEIN SURFACES. STRUCTURAL ANALYSIS OF H.SALINARUM DPSA IN ITS LOW AND HIGH IRON STATES
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Helicobacter pylori. Organism_taxid: 210. (1)
1JI4A:1-144; B:1-144; K:1-144; L:1-144; C:1-144; D:1-144; E:1-144; F:1-144; G:1-144; H:1-144; I:1-144; J:1-144NAP PROTEIN FROM HELICOBACTER PYLORI
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Helicobacter pylori. Organism_taxid: 210. Strain: j99. (5)
3BVEE:1005-166; A:1006-166; B:1006-166; C:1006-166; D:1006-166; F:1005-167STRUCTURAL BASIS FOR THE IRON UPTAKE MECHANISM OF HELICOBACTER PYLORI FERRITIN
3BVFA:1005-166; B:1005-166; C:1005-166; D:1005-166; E:1005-166; F:1005-166STRUCTURAL BASIS FOR THE IRON UPTAKE MECHANISM OF HELICOBACTER PYLORI FERRITIN
3BVIA:1005-166; B:1005-166; C:1005-166; D:1005-166; E:1005-166; F:1005-167STRUCTURAL BASIS FOR THE IRON UPTAKE MECHANISM OF HELICOBACTER PYLORI FERRITIN
3BVKA:1005-166; E:1005-166; F:1005-166; B:1005-166; C:1005-166; D:1005-166STRUCTURAL BASIS FOR THE IRON UPTAKE MECHANISM OF HELICOBACTER PYLORI FERRITIN
3BVLA:1005-166; B:1005-166; C:1005-166; D:1005-166; E:1005-166; F:1005-167STRUCTURAL BASIS FOR THE IRON UPTAKE MECHANISM OF HELICOBACTER PYLORI FERRITIN
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Horse (Equus caballus) (31)
1AEWA:6-175L-CHAIN HORSE APOFERRITIN
1DATA:1-174CUBIC CRYSTAL STRUCTURE RECOMBINANT HORSE L APOFERRITIN
1GWGA:2-171TRI-IODIDE DERIVATIVE OF APOFERRITIN
1HRSA:1-174A CRYSTALLOGRAPHIC STUDY OF HAEM BINDING TO FERRITIN
1IERA:1-174CUBIC CRYSTAL STRUCTURE OF NATIVE HORSE SPLEEN FERRITIN
1IESA:1-174; B:1-174; C:1-174; D:1-174; E:1-174; F:1-174TETRAGONAL CRYSTAL STRUCTURE OF NATIVE HORSE SPLEEN FERRITIN
1XZ1A:2-171COMPLEX OF HALOTHANE WITH APOFERRITIN
1XZ3A:2-171COMPLEX OF APOFERRITIN WITH ISOFLURANE
2G4HA:6-175ANOMALOUS SUBSTRUCTURE OF APOFERRITIN
2GYDA:2-171COMPLEX OF EQUINE APOFERRITIN WITH THE H-DIAZIFLURANE PHOTOLABELING REAGENT
2V2IA:2-171WILD TYPE RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN ACIDIC CONDITIONS
2V2JA:2-171WILD TYPE RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN BASIC CONDITIONS
2V2LA:2-172MUTANT (E53,56,57,60Q) RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN ACIDIC CONDITIONS
2V2MA:2-171MUTANT (E53,56,57,60Q) RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN BASIC CONDITIONS
2V2NA:1-171MUTANT R59M RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN ACIDIC CONDITIONS
2V2OA:1-171MUTANT R59M RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN BASIC CONDITIONS
2V2PA:2-171MUTANT (E53,56,57,60Q AND R59M) RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN ACIDIC CONDITIONS
2V2RA:2-172MUTANT (E53,56,57,60Q AND R59M) RECOMBINANT HORSE SPLEEN APOFERRITIN COCRYSTALLIZED WITH HAEMIN IN BASIC CONDITIONS
2V2SA:1-171MUTANT R59M RECOMBINANT HORSE SPLEEN APOFERRITIN CRYSTALLIZED IN ACIDIC CONDITIONS
2W0OA:2-171HORSE SPLEEN APOFERRITIN
2Z5PA:1-171APO-FR WITH LOW CONTENT OF PD IONS
2Z5QA:2-174APO-FR WITH INTERMEDIATE CONTENT OF PD ION
2Z5RA:2-173APO-FR WITH HIGH CONTENT OF PD IONS
2ZA6A:2-172RECOMBINANT HORSE L-CHAIN APOFERRITIN
2ZA7A:5-174RECOMBINANT HORSE L-CHAIN APOFERRITIN N-TERMINAL DELETION MUTANT (RESIDUES 1-4)
2ZA8A:9-173RECOMBINANT HORSE L-CHAIN APOFERRITIN N-TERMINAL DELETION MUTANT (RESIDUES 1-8)
2ZG7X:1-173CRYSTAL STRUCTURE OF PD(ALLYL)/APO-FR
2ZG8X:1-173CRYSTAL STRUCTURE OF PD(ALLYL)/APO-H49AFR
2ZG9X:1-173CRYSTAL STRUCTURE OF PD(ALLYL)/APO-H114AFR
2ZURX:1-173CRYSTAL STRUCTURE OF RH(NBD)/APO-FR
3FI6A:2-173APO-H49AFR WITH HIGH CONTENT OF PD IONS
(-)
House mouse (Mus musculus) (2)
1H96A:1-180RECOMBINANT MOUSE L-CHAIN FERRITIN
1LB3A:6-184STRUCTURE OF RECOMBINANT MOUSE L CHAIN FERRITIN AT 1.2 A RESOLUTION
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Human (Homo sapiens) (16)
1FHAA:5-184SOLVING THE STRUCTURE OF HUMAN H FERRITIN BY GENETICALLY ENGINEERING INTERMOLECULAR CRYSTAL CONTACTS
1R03A:6-176CRYSTAL STRUCTURE OF A HUMAN MITOCHONDRIAL FERRITIN
2CEIA:5-176RECOMBINANT HUMAN H FERRITIN, K86Q MUTANT, SOAKED WITH ZN
2CHIA:5-176RECOMBINANT HUMAN H FERRITIN, K86Q AND E27D MUTANT
2CIHA:5-176RECOMBINANT HUMAN H FERRITIN, K86Q AND E27D MUTANT, SOAKED WITH ZN
2CLUA:5-176RECOMBINANT HUMAN H FERRITIN, K86Q AND E107D MUTANT
2CN6A:5-176RECOMBINANT HUMAN H FERRITIN, K86Q AND E107D MUTANT, SOAKED WITH ZN IONS
2CN7A:5-176RECOMBINANT HUMAN H FERRITIN, K86Q, E27D AND E107D MUTANT
2FFXJ:5-177STRUCTURE OF HUMAN FERRITIN L. CHAIN
2FG4A:5-175STRUCTURE OF HUMAN FERRITIN L CHAIN
2FG8A:5-178; B:5-178; C:5-178; D:5-178; E:5-178; F:5-178; G:5-178; H:5-178STRUCTURE OF HUMAN FERRITIN L CHAIN
2FHAA:5-176HUMAN H CHAIN FERRITIN
2IU2A:5-176RECOMBINANT HUMAN H FERRITIN, K86Q, E27D AND E107D MUTANT, SOAKED WITH ZN IONS
2Z6MA:5-176; B:5-176; C:5-176; D:5-176; E:5-176; F:5-176; G:5-176; H:5-176; I:5-176; J:5-176; K:5-176; L:5-176CRYSTAL STRUCTURE OF HUMAN FERRITIN H8 AS BIOTEMPLATE FOR NOBLE METAL NANOPARTICLE SYNTHESIS
3ERZA:5-176; B:5-176; C:5-176; D:5-176; E:5-176; F:5-176; G:5-176; H:5-176; I:5-176; J:5-176; K:5-176; L:5-176DIRECTING NOBLE METAL ION CHEMISTRY WITHIN A DESIGNED FERRITIN PROTEIN. MERCURY IONS ON THE THREE-FOLD CHANNEL
3ES3A:5-176DIRECTING NOBLE METAL ION CHEMISTRY WITHIN A DESIGNED FERRITIN PROTEIN. THE COMPLEX WITH GOLD IONS. FERRITIN H8-H9X MUTANT
(-)
Lactobacillus plantarum. Organism_taxid: 1590. (1)
1O9IA:1-203; B:1-203; C:1-203; D:1-203; E:1-203; F:1-203CRYSTAL STRUCTURE OF THE Y42F MUTANT OF MANGANESE CATALASE FROM LACTOBACILLUS PLANTARUM AT 1.33A RESOLUTION
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Lactobacillus plantarum. Organism_taxid: 1590. Strain: atcc 14431. (2)
1JKUA:1-203; E:1-203; F:1-203; B:1-203; C:1-203; D:1-203CRYSTAL STRUCTURE OF MANGANESE CATALASE FROM LACTOBACILLUS PLANTARUM
1JKVA:1-197; B:1-203; C:1-203; D:1-203; E:1-203; F:1-203CRYSTAL STRUCTURE OF MANGANESE CATALASE FROM LACTOBACILLUS PLANTARUM COMPLEXED WITH AZIDE
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Listeria innocua. Organism_taxid: 1642 (1)
1QGHA:7-156; B:7-156; K:7-156; L:7-156; C:7-156; D:7-156; E:7-156; F:7-156; G:7-156; H:7-156; I:7-156; J:7-156THE X-RAY STRUCTURE OF THE UNUSUAL DODECAMERIC FERRITIN FROM LISTERIA INNOCUA, REVEALS A NOVEL INTERSUBUNIT IRON BINDING SITE.
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Listeria innocua. Organism_taxid: 1642. (3)
2BJYL:5-156; B:6-156; A:7-156; C:7-156; D:7-156; E:7-156; F:7-156; G:7-156; I:7-156; J:7-156; H:8-156; K:8-156THE X-RAY CRYSTAL STRUCTURE OF LISTERIA INNOCUA DPS H31G-H43G MUTANT.
2BK6C:3-156; A:7-156; B:7-156; D:7-156; E:7-156; F:7-156THE X-RAY CRYSTAL STRUCTURE OF THE LISTERIA INNOCUA H31G DPS MUTANT.
2BKCA:7-156; E:7-156; F:7-156; G:7-156; H:7-156; I:7-156; J:7-156; K:7-156; L:7-156; M:7-156; N:7-156; O:7-156; P:7-156; Q:7-156; S:7-156; T:7-156; U:7-156; V:7-156; X:7-156; Y:7-156; R:8-156; B:7-156; C:7-156; D:7-156THE X-RAY STRUCTURE OF THE H43G LISTERIA INNOCUA DPS MUTANT
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Listeria monocytogenes. Organism_taxid: 1639. (1)
2IY4U:3-156; A:6-156; D:7-156; E:7-156; H:7-156; I:7-156; J:7-156; K:7-156; L:7-156; N:7-156; P:7-156; T:7-156; C:6-156; V:7-156; X:7-156; Y:7-156; M:8-156; F:6-156; G:6-156; O:6-156; Q:6-156; R:6-156; S:6-156; B:7-156X-RAY STRUCTURE OF DPS FROM LISTERIA MONOCYTOGENES
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Magnetospirillum magnetotacticum ms-1. Organism_taxid: 272627. Strain:ms-1. (1)
2OH3A:3-149CRYSTAL STRUCTURE OF COG1633: UNCHARACTERIZED CONSERVED PROTEIN (ZP_00055496.1) FROM MAGNETOSPIRILLUM MAGNETOTACTICUM MS-1 AT 2.00 A RESOLUTION
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Mc2 155 (Mycobacterium smegmatis str) (1)
3BKNA:1-161; B:1-161; K:1-161; L:1-161; C:1-161; D:1-161; E:1-161; F:1-161; G:1-161; H:1-161; I:1-161; J:1-161THE STRUCTURE OF MYCOBACTERIAL BACTERIOFERRITIN
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Mit 9313 (Prochlorococcus marinus str) (1)
2OC5A:27-241CRYSTAL STRUCTURE OF A FERRITIN-LIKE PROTEIN (PMT1231) FROM PROCHLOROCOCCUS MARINUS STR. MIT 9313 AT 1.68 A RESOLUTION
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Mycobacterium smegmatis. Organism_taxid: 1772. (1)
2YW6B:11-160; C:11-160; A:11-158STRUCTURAL STUDIES OF N TERMINAL DELETION MUTANT OF DPS FROM MYCOBACTERIUM SMEGMATIS
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Mycobacterium smegmatis. Organism_taxid: 1772. (5)
1UVHA:5-161; B:5-161; C:5-161; D:5-161X-RAY STRUCTURE OF DPS FROM MYCOBACTERIUM SMEGMATIS
1VEIA:1-175MYCOBACTERIUM SMEGMATIS DPS
1VELA:3-165; B:3-165; D:3-165; F:3-165; E:1-165; C:3-168MYCOBACTERIUM SMEGMATIS DPS TETRAGONAL FORM
1VEQA:3-160; B:3-160; C:3-160; D:3-160; E:3-160; F:3-160; G:3-160; H:3-160; I:3-160; J:3-160; K:3-160; L:3-160MYCOBACTERIUM SMEGMATIS DPS HEXAGONAL FORM
2YW7C:11-157; A:11-156; F:11-156; H:12-157; J:12-157; B:11-155; D:11-155; E:11-155; I:12-156; G:13-156CRYSTAL STRUCTURE OF C-TERMINAL DELETION MUTANT OF MYCOBACTERIUM SMEGMATIS DPS
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Mycobacterium tuberculosis. Organism_taxid: 1773. (1)
2IB0A:17-151; B:17-148CRYSTAL STRUCTURE OF A CONSERVED HYPOTHETICAL PROTEIN, RV2844, FROM MYCOBACTERIUM TUBERCULOSIS
(-)
Mycobacterium tuberculosis. Organism_taxid: 83332. Strain: h37rv. (1)
2WTLA:2-162; B:2-162; C:2-162; D:2-162; E:2-162; F:2-162CRYSTAL STRUCTURE OF BFRA FROM M. TUBERCULOSIS
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Pseudomonas aeruginosa. Organism_taxid: 287. (4)
3IS7C:2-156; B:3-156; D:3-156; E:3-156; F:3-156; G:3-156; I:3-156; J:3-156; K:3-156; L:3-156; M:3-156; N:3-156; O:3-156; P:3-156; Q:3-156; S:3-156; T:3-156; U:3-156; V:3-156; X:3-156; A:4-156; H:2-156; R:2-156; W:2-156STRUCTURE OF MINERALIZED BFRB FROM PSEUDOMONAS AERUGINOSA TO 2.1A RESOLUTION
3IS8A:2-156; B:2-156; C:2-156; E:2-156; F:2-156; G:2-156; J:2-156; K:2-156; L:2-156; M:2-156; N:2-156; O:2-156; P:2-156; Q:2-156; R:2-156; S:2-156; T:2-156; V:2-156; W:2-156; X:2-156; D:3-156; H:3-156; I:3-156; U:3-156STRUCTURE OF MINERALIZED BFRB SOAKED WITH FESO4 FROM PSEUDOMONAS AERUGINOSA TO 2.25A RESOLUTION
3ISEW:1-156; H:2-156; R:2-156; A:3-156; B:3-156; C:3-156; D:3-156; E:3-156; F:3-156; G:3-156; I:3-156; J:3-156; K:3-156; L:3-156; M:3-156; N:3-156; O:3-156; P:3-156; Q:3-156; S:3-156; T:3-156; U:3-156; V:3-156; X:3-156STRUCTURE OF MINERALIZED BFRB (DOUBLE SOAK) FROM PSEUDOMONAS AERUGINOSA TO 2.8A RESOLUTION
3ISFD:1-157; C:2-157; A:2-156; B:2-156; E:2-156; F:2-156STRUCTURE OF NON-MINERALIZED BFRB (AS-ISOLATED) FROM PSEUDOMONAS AERUGINOSA TO 2.07A RESOLUTION
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Pseudomonas putida kt2440. Organism_taxid: 160488. Strain: kt2440. (1)
2ITBB:4-201; A:3-201CRYSTAL STRUCTURE OF A PUTATIVE TRNA-(MS(2)IO(6)A)-HYDROXYLASE (PP_2188) FROM PSEUDOMONAS PUTIDA KT2440 AT 2.05 A RESOLUTION
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Pyrococcus furiosus. Organism_taxid: 2261. (6)
1NNQA:2-132; B:2-132RUBRERYTHRIN FROM PYROCOCCUS FURIOSUS PFU-1210814
2HR5A:2-132; B:2-132PF1283- RUBRERYTHRIN FROM PYROCOCCUS FURIOSUS IRON BOUND FORM
2JD6_:1-167; 1:1-167; A:1-167; B:1-167; C:1-167; D:1-167; E:1-167; F:1-167; G:1-167; H:1-167; I:1-167; J:1-167; 2:1-167; K:1-167; L:1-167; M:1-167; N:1-167; O:1-167; P:1-167; Q:1-167; R:1-167; S:1-167; T:1-167; 3:1-167; U:1-167; V:1-167; W:1-167; X:1-167; Y:1-167; Z:1-167; 4:1-167; 5:1-167; 6:1-167; 7:1-167; 8:1-167; 9:1-167CRYSTAL STRUCTURE OF THE AS ISOLATED FERRITIN FROM THE HYPERTHERMOPHILIC ARCHAEAL ANAEROBE PYROCOCCUS FURIOSUS
2JD7_:1-167; 1:1-167; 2:1-167; 3:1-167; 4:1-167; 5:1-167; 6:1-167; 7:1-167; 8:1-167; 9:1-167; A:1-167; B:1-167; C:1-167; D:1-167; E:1-167; F:1-167; G:1-167; H:1-167; I:1-167; J:1-167; K:1-167; L:1-167; M:1-167; N:1-167; O:1-167; P:1-167; Q:1-167; R:1-167; S:1-167; T:1-167; U:1-167; V:1-167; W:1-167; X:1-167; Y:1-167; Z:1-167CRYSTAL STRUCTURE OF THE FE-SOAKED FERRITIN FROM THE HYPERTHERMOPHILIC ARCHAEAL ANAEROBE PYROCOCCUS FURIOSUS
2JD8_:1-167; S:1-167; T:1-167; U:1-167; V:1-167; W:1-167; X:1-167; Y:1-167; Z:1-167; 1:1-167; 2:1-167; 3:1-167; 4:1-167; 5:1-167; 6:1-167; 7:1-167; 8:1-167; 9:1-167; A:1-167; B:1-167; C:1-167; D:1-167; E:1-167; F:1-167; G:1-167; H:1-167; I:1-167; J:1-167; K:1-167; L:1-167; M:1-167; N:1-167; O:1-167; P:1-167; Q:1-167; R:1-167CRYSTAL STRUCTURE OF THE ZN-SOAKED FERRITIN FROM THE HYPERTHERMOPHILIC ARCHAEAL ANAEROBE PYROCOCCUS FURIOSUS
2X17M:1-170; N:1-170; O:1-170; P:1-170; Y:1-170; _:1-171; 2:1-171; 3:1-171; 6:1-171; 9:1-171; G:1-171; K:1-171; R:1-171; 1:1-172; 4:1-172; 5:1-172; 7:1-172; 8:1-172; H:1-172; I:1-172; J:1-172; L:1-172; Q:1-172; Z:1-172THE X-RAY STRUCTURE OF FERRITIN FROM PYROCOCCUS FURIOSUS LOADED WITH AG(I)
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Rhodobacter capsulatus. Organism_taxid: 1061 (1)
1JGCA:1-160; B:1-160; C:1-160THE 2.6 A STRUCTURE RESOLUTION OF RHODOBACTER CAPSULATUS BACTERIOFERRITIN WITH METAL-FREE DINUCLEAR SITE AND HEME IRON IN A CRYSTALLOGRAPHIC SPECIAL POSITION
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Rhodobacter sphaeroides. Organism_taxid: 272943. Strain: 2.4.1. (1)
3GVYB:1-158; C:1-158; A:1-157CRYSTAL STRUCTURE OF BACTERIOFERRITIN FROM R.SPHAEROIDES
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Rhodopseudomonas palustris cga009. Organism_taxid: 258594. Strain: cga009. (1)
2GYQA:1-169; B:3-159YCFI, A PUTATIVE STRUCTURAL PROTEIN FROM RHODOPSEUDOMONAS PALUSTRIS.
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Soybeans (Glycine max) (2)
3A68E:18-207; H:15-207; L:15-207; A:14-207; B:14-207; D:14-207; F:14-207; G:14-207; I:14-207; J:14-207; K:14-207; M:14-207; N:14-207; O:14-207; P:14-207; Q:14-207; S:14-207; T:14-207; U:14-207; V:14-207; W:14-207; X:14-207; C:13-208; R:12-207CRYSTAL STRUCTURE OF PLANT FERRITIN REVEALS A NOVEL METAL BINDING SITE THAT FUNCTIONS AS A TRANSIT SITE FOR METAL TRANSFER IN FERRITIN
3A9QE:30-207; G:15-207; Q:15-207; S:15-207; U:15-207; V:15-207; A:14-207; B:14-207; C:14-207; D:14-207; F:14-207; J:14-207; H:15-207; T:14-207; W:14-207; X:14-207; R:12-207; I:15-207; K:15-207; L:15-207; M:15-207; N:15-207; O:15-207; P:15-207CRYSTAL STRUCTURE ANALYSIS OF E173A VARIANT OF THE SOYBEAN FERRITIN SFER4
(-)
Streptococcus pyogenes. Organism_taxid: 1314. (3)
2WLAA:3-175STREPTOCOCCUS PYOGENES DPR
2WLUA:4-175IRON-BOUND CRYSTAL STRUCTURE OF STREPTOCOCCUS PYOGENES DPR
2XGWA:4-175ZINC-BOUND CRYSTAL STRUCTURE OF STREPTOCOCCUS PYOGENES DPR
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Streptococcus suis. Organism_taxid: 1307. Strain: d282. (5)
1UMNG:8-172; I:20-172; D:21-172; E:21-172; J:21-172; K:21-172; A:22-172; B:22-172; C:22-172; F:22-172; H:22-172; L:22-172CRYSTAL STRUCTURE OF DPS-LIKE PEROXIDE RESISTANCE PROTEIN (DPR) FROM STREPTOCOCCUS SUIS
2BW1G:8-172; K:20-172; D:21-172; A:22-172; B:22-172; C:22-172; E:22-172; F:22-172; H:22-172; I:22-172; J:22-172; L:22-172IRON-BOUND CRYSTAL STRUCTURE OF DPS-LIKE PEROXIDE RESISTANCE PROTEIN (DPR) FROM STREPTOCOCCUS SUIS.
2CF7A:14-172; G:20-172; L:22-172; B:23-172; C:21-172; D:21-172; I:21-172; E:22-172; F:22-172; H:22-172; J:22-172; K:22-172ASP74ALA MUTANT CRYSTAL STRUCTURE FOR DPS-LIKE PEROXIDE RESISTANCE PROTEIN DPR FROM STREPTOCOCCUS SUIS.
2UX1G:8-172; I:20-172; D:21-172; F:21-172; H:21-172; J:21-172; K:21-172; L:21-172; A:22-172; B:22-172; C:22-172; E:23-172IDENTIFICATION OF TWO ZINC-BINDING SITES IN THE STREPTOCOCCUS SUIS DPR PROTEIN
2V15G:8-172; I:20-172; D:21-172; F:21-172; H:21-172; J:21-172; K:21-172; L:21-172; A:22-172; B:22-172; C:21-171; E:22-172TERBIUM BINDING IN STREPTOCOCCUS SUIS DPR PROTEIN
(-)
Streptomyces coelicolor a3(2). Organism_taxid: 100226. Strain: a3(2),m145. (1)
2QF9A:38-203; B:38-203CRYSTAL STRUCTURE OF PUTATIVE SECRETED PROTEIN DUF305 FROM STREPTOMYCES COELICOLOR
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Synechococcus elongatus. Organism_taxid: 32046. (1)
2VXXA:5-176; D:5-176; B:4-176; C:4-176X-RAY STRUCTURE OF DPSA FROM THERMOSYNECHOCOCCUS ELONGATUS
(-)
Thermotoga maritima msb8. Organism_taxid: 243274. Strain: msb8. (1)
1VLGA:1-164; B:1-164; C:1-164; D:1-164; E:1-164; F:1-164; G:1-164; H:1-164CRYSTAL STRUCTURE OF FERRITIN (TM1128) FROM THERMOTOGA MARITIMA AT 2.00 A RESOLUTION
(-)
Thermotoga maritima msb8. Organism_taxid: 243274. Strain: msb8. (1)
1Z4AA:1-164; B:1-164; C:1-164; D:1-164; E:1-164; F:1-164; G:1-164; H:1-164FERRITIN FROM T. MARITIMA
(-)
Thermotoga maritima. Organism_taxid: 2336. (1)
1VJXA:-3-145CRYSTAL STRUCTURE OF A PUTATIVE FERRITIN-LIKE DIIRON-CARBOXYLATE PROTEIN (TM1526) FROM THERMOTOGA MARITIMA AT 2.30 A RESOLUTION
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Treponema pallidum. Organism_taxid: 160. (1)
2FJCB:22-177; A:27-177; P:27-177; C:28-177; E:28-177; G:28-177; N:28-177; O:28-177; D:27-177; F:27-177; H:27-177; I:27-177; J:27-177; K:27-177; L:27-177; M:27-177CRYSTAL STRUCTURE OF ANTIGEN TPF1 FROM TREPONEMA PALLIDUM
(-)
Vulgaris str (Desulfovibrio vulgaris subsp) (4)
1B71A:2-146RUBRERYTHRIN
1DVBA:2-146RUBRERYTHRIN
1QYBA:2-146X-RAY CRYSTAL STRUCTURE OF DESULFOVIBRIO VULGARIS RUBRERYTHRIN WITH ZINC SUBSTITUTED INTO THE [FE(SCYS)4] SITE AND ALTERNATIVE DIIRON SITE STRUCTURES
1RYTA:2-146RUBRERYTHRIN