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Class: Membrane and cell surface proteins and peptides (2046)
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Fold: Transmembrane helix hairpin (84)
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Superfamily: Cytochrome c oxidase subunit II-like, transmembrane region (66)
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Family: automated matches (9)
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Protein domain: automated matches (9)
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Cow (Bos taurus) [TaxId: 9913] (1)
3ASNB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY OXIDIZED STATE MEASURED AT 1.7470 ANGSTROM WAVELENGTH
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Thermus thermophilus HB8 [TaxId: 300852] (8)
2QPEB:3-36AN UNEXPECTED OUTCOME OF SURFACE-ENGINEERING AN INTEGRAL MEMBRANE PROTEIN: IMPROVED CRYSTALLIZATION OF CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS
3EH3B:3-36STRUCTURE OF THE REDUCED FORM OF CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS
3EH4B:3-40STRUCTURE OF THE REDUCED FORM OF CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS
3EH5B:3-40STRUCTURE OF THE REDUCED FORM OF CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS
3QJSB:3-36THE STRUCTURE OF AND PHOTOLYTIC INDUCED CHANGES OF CARBON MONOXIDE BINDING TO THE CYTOCHROME BA3-OXIDASE FROM THERMUS THERMOPHILUS
3QJTB:3-36THE STRUCTURE OF AND PHOTOLYTIC INDUCED CHANGES OF CARBON MONOXIDE BINDING TO THE CYTOCHROME BA3-OXIDASE FROM THERMUS THERMOPHILUS
4G72B:3-36STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT V236M FROM THERMUS THERMOPHILUS
4G7RB:3-36STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT V236A FROM THERMUS THERMOPHILUS
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Family: Cytochrome c oxidase subunit II-like, transmembrane region (57)
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Protein domain: automated matches (4)
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Rhodobacter sphaeroides [TaxId: 272943] (4)
3OM3B:30-129; D:30-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES WITH K362M MUTATION IN THE REDUCED STATE
3OMAB:30-129; D:30-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES WITH K362M MUTATION
3OMIB:30-129; D:30-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES WITH D132A MUTATION
3OMNB:30-129; D:30-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES WITH D132A MUTATION IN THE REDUCED STATE
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Protein domain: Bacterial aa3 type cytochrome c oxidase subunit II (10)
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Paracoccus denitrificans [TaxId: 266] (4)
1AR1B:1-107STRUCTURE AT 2.7 ANGSTROM RESOLUTION OF THE PARACOCCUS DENITRIFICANS TWO-SUBUNIT CYTOCHROME C OXIDASE COMPLEXED WITH AN ANTIBODY FV FRAGMENT
1QLEB:1-107CRYO-STRUCTURE OF THE PARACOCCUS DENITRIFICANS FOUR-SUBUNIT CYTOCHROME C OXIDASE IN THE COMPLETELY OXIDIZED STATE COMPLEXED WITH AN ANTIBODY FV FRAGMENT
3EHBB:1-107A D-PATHWAY MUTATION DECOUPLES THE PARACOCCUS DENITRIFICANS CYTOCHROME C OXIDASE BY ALTERING THE SIDE CHAIN ORIENTATION OF A DISTANT, CONSERVED GLUTAMATE
3HB3B:1-107HIGH RESOLUTION CRYSTAL STRUCTURE OF PARACOCCUS DENITRIFICANS CYTOCHROME C OXIDASE
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Rhodobacter sphaeroides [TaxId: 1063] (6)
1M56B:30-129; H:30-129STRUCTURE OF CYTOCHROME C OXIDASE FROM RHODOBACTOR SPHAEROIDES (WILD TYPE)
1M57B:30-129; H:30-129STRUCTURE OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES (EQ(I-286) MUTANT))
2GSMB:30-129; D:30-129CATALYTIC CORE (SUBUNITS I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES
3DTUB:29-129; D:28-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES COMPLEXED WITH DEOXYCHOLIC ACID
3FYEB:30-129; D:30-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES IN THE REDUCED STATE
3FYIB:30-129; D:30-129CATALYTIC CORE SUBUNITS (I AND II) OF CYTOCHROME C OXIDASE FROM RHODOBACTER SPHAEROIDES IN THE REDUCED STATE BOUND WITH CYANIDE
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Protein domain: Bacterial ba3 type cytochrome c oxidase subunit II (18)
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Thermus thermophilus [TaxId: 274] (18)
1EHKB:3-40CRYSTAL STRUCTURE OF THE ABERRANT BA3-CYTOCHROME-C OXIDASE FROM THERMUS THERMOPHILUS
1XMEB:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS
2QPDB:3-36AN UNEXPECTED OUTCOME OF SURFACE-ENGINEERING AN INTEGRAL MEMBRANE PROTEIN: IMPROVED CRYSTALLIZATION OF CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS
3BVDB:3-36STRUCTURE OF SURFACE-ENGINEERED CYTOCHROME BA3 OXIDASE FROM THERMUS THERMOPHILUS UNDER XENON PRESSURE, 100PSI 5MIN
3QJQB:3-40THE STRUCTURE OF AND PHOTOLYTIC INDUCED CHANGES OF CARBON MONOXIDE BINDING TO THE CYTOCHROME BA3-OXIDASE FROM THERMUS THERMOPHILUS
3QJUB:3-40THE STRUCTURE OF AND PHOTOLYTIC INDUCED CHANGES OF CARBON MONOXIDE BINDING TO THE CYTOCHROME BA3-OXIDASE FROM THERMUS THERMOPHILUS
3QJVB:3-40THE STRUCTURE OF AND PHOTOLYTIC INDUCED CHANGES OF CARBON MONOXIDE BINDING TO THE CYTOCHROME BA3-OXIDASE FROM THERMUS THERMOPHILUS
3S8FB:3-401.8 A STRUCTURE OF BA3 CYTOCHROME C OXIDASE FROM THERMUS THERMOPHILUS IN LIPID ENVIRONMENT
3S8GB:3-401.8 A STRUCTURE OF BA3 CYTOCHROME C OXIDASE MUTANT (A120F) FROM THERMUS THERMOPHILUS IN LIPID ENVIRONMENT
4FA7B:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT A204F FROM THERMUS THERMOPHILUS
4FAAB:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT A120F+A204F FROM THERMUS THERMOPHILUS
4G70B:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT V236T FROM THERMUS THERMOPHILUS
4G71B:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT V236N FROM THERMUS THERMOPHILUS
4G7QB:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT V236L FROM THERMUS THERMOPHILUS
4G7SB:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT V236I FROM THERMUS THERMOPHILUS
4GP4B:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT Y133F FROM THERMUS THERMOPHILUS
4GP5B:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT Y133W FROM THERMUS THERMOPHILUS
4GP8B:3-40STRUCTURE OF RECOMBINANT CYTOCHROME BA3 OXIDASE MUTANT Y133W+T231F FROM THERMUS THERMOPHILUS
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Protein domain: Cytochrome O ubiquinol oxidase, subunit II (1)
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Escherichia coli [TaxId: 562] (1)
1FFTB:27-117; G:27-117THE STRUCTURE OF UBIQUINOL OXIDASE FROM ESCHERICHIA COLI
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Protein domain: Mitochondrial cytochrome c oxidase, subunit II (24)
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Cow (Bos taurus) [TaxId: 9913] (24)
1OCCB:1-90; O:1-90STRUCTURE OF BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE
1OCOB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN CARBON MONOXIDE-BOUND STATE
1OCRB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY REDUCED STATE
1OCZB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN AZIDE-BOUND STATE
1V54B:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE
1V55B:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY REDUCED STATE
2DYRB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE
2DYSB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE MODIFIED BY DCCD
2EIJB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY REDUCED STATE
2EIKB:1-90; O:1-90CADMIUM ION BINDING STRUCTURE OF BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY REDUCED STATE
2EILB:1-90; O:1-90CADMIUM ION BINDING STRUCTURE OF BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY OXIDIZED STATE
2EIMB:1-90; O:1-90ZINC ION BINDING STRUCTURE OF BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY REDUCED STATE
2EINB:1-90; O:1-90ZINC ION BINDING STRUCTURE OF BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY OXIDIZED STATE
2OCCB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE
2Y69B:1-90; O:2-90BOVINE HEART CYTOCHROME C OXIDASE RE-REFINED WITH MOLECULAR OXYGEN
2ZXWB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE (1-S X-RAY EXPOSURE DATASET)
3ABKB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE NO-BOUND FULLY REDUCED STATE (50K)
3ABLB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE (15-S X-RAY EXPOSURE DATASET)
3ABMB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE AT THE FULLY OXIDIZED STATE (200-S X-RAY EXPOSURE DATASET)
3AG1B:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE CARBON MONOXIDE-BOUND FULLY REDUCED STATE AT 280 K
3AG2B:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE CARBON MONOXIDE-BOUND FULLY REDUCED STATE AT 100 K
3AG3B:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE NITRIC OXIDE-BOUND FULLY REDUCED STATE AT 100 K
3AG4B:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE CYANIDE ION-BOUND FULLY REDUCED STATE AT 100 K
3ASOB:1-90; O:1-90BOVINE HEART CYTOCHROME C OXIDASE IN THE FULLY OXIDIZED STATE MEASURED AT 0.9 ANGSTROM WAVELENGTH