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STRUCTURE REFINEMENT OF THE ALDEHYDE OXIDOREDUCTASE FROM DESULFOVIBRIO GIGAS AT 1.28 A External Resource: Annotation Chains Type Family Name Domain Identifier Family Identifier Provenance Source (Version) A SCOP2 Family CO dehydrogenase ISP C-domain like 8029062 4001010 SCOP2 (2022-06-29) A SCOP2 Family 2Fe-2S ferredoxin domains from multidomain proteins 8029063 4000241 SCOP2 (2022-06-29) A SCOP2 Family CO dehydrogenase molybdoprotein N-domain-like 8029064 4001129 SCOP2 (2022-06-29) A SCOP2 Family Molybdenum cofactor-binding domain 8029066 4001972 SCOP2 (2022-06-29) A SCOP2 Superfamily CO dehydrogenase ISP C-domain like 8041441 3000439 SCOP2 (2022-06-29) A SCOP2 Superfamily 2Fe-2S ferredoxin-like 8041442 3000113 SCOP2 (2022-06-29) A SCOP2 Superfamily CO dehydrogenase molybdoprotein N-domain-like 8041443 3000847 SCOP2 (2022-06-29) A SCOP2 Superfamily Molybdenum cofactor-binding domain 8041445 3000625 SCOP2 (2022-06-29)
Chains Family Name Domain Identifier Architecture Possible Homology Homology Topology Family Provenance Source (Version) A Fer2_2 e1vlbA1 A: alpha bundles X: CO dehydrogenase ISP C-domain like (From Topology) H: CO dehydrogenase ISP C-domain like (From Topology) T: CO dehydrogenase ISP C-domain like F: Fer2_2 ECOD (1.6) A Fer2 e1vlbA3 A: a+b two layers X: beta-Grasp H: Ubiquitin-related T: Ubiquitin-like F: Fer2 ECOD (1.6) A Ald_Xan_dh_C2 e1vlbA5 A: a+b two layers X: MocoBD/DmpA-related (From Homology) H: MocoBD/DmpA-related T: Molybdenum cofactor-binding domain F: Ald_Xan_dh_C2 ECOD (1.6) A Ald_Xan_dh_C e1vlbA4 A: a+b complex topology X: alpha/beta-Hammerhead/Barrel-sandwich hybrid H: alpha/beta-Hammerhead/Barrel-sandwich hybrid T: CO dehydrogenase molybdoprotein N-domain-like F: Ald_Xan_dh_C ECOD (1.6)
Chains Polymer Molecular Function Biological Process Cellular Component ALDEHYDE OXIDOREDUCTASE - -
Structure Motif Annotation: Mechanism and Catalytic Site Atlas M-CSA Database Homepage Chains Enzyme Name Description Catalytic Residues aldehyde dehydrogenase (FAD-independent)
M-CSA #105 The sulfate-reducing bacteria Desulfovibrio gigas synthesises a xanthine oxidase-related molybdenum-iron protein aldehyde oxidoreductase (Mop) which catalyses the oxidation of aldehydes to carboxylic acids. Mop contains two separate [2Fe-2S] clusters, and an Mo ion held by a pterin derivative called molybdopterin cytosine dinucleotide (together called the molybedenum cofactor, Mo-co).
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