EC Tree |
1. Oxidoreductases |
1.15 Acting on superoxide as acceptor |
1.15.1 Acting on superoxide as acceptor (only sub-subclass identified to date) |
ID: | 1.15.1.2 |
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Description: | Superoxide reductase. |
Alternative Name: |
Neelaredoxin. Desulfoferrodoxin. |
Cath: | 2.20.28.10; 2.20.28.100; 2.30.30.510; 2.60.40.730; |
Click one PDB to see exact 3D structure provided by NGL.
Note: Use your mouse to drag, rotate, and zoom in and out of the structure. Mouse-over to identify atoms and bonds. Mouse controls documentation.UniProtKB Enzyme Link: | UniProtKB 1.15.1.2 |
BRENDA Enzyme Link: | BRENDA 1.15.1.2 |
KEGG Enzyme Link: | KEGG1.15.1.2 |
BioCyc Enzyme Link: | BioCyc 1.15.1.2 |
ExPASy Enzyme Link: | ExPASy1.15.1.2 |
EC2PDB Enzyme Link: | EC2PDB 1.15.1.2 |
ExplorEnz Enzyme Link: | ExplorEnz 1.15.1.2 |
PRIAM enzyme-specific profiles Link: | PRIAM 1.15.1.2 |
IntEnz Enzyme Link: | IntEnz 1.15.1.2 |
MEDLINE Enzyme Link: | MEDLINE 1.15.1.2 |
RHEA:21324 | 2 H(+) + reduced [rubredoxin] + superoxide = H2O2 + oxidized [rubredoxin] |
RULE(radius=1) | [Fe+2;H0:1].[H+;H0:2].[H+;H0:3]>>[Fe+3;H0:1] |
Reaction | ![]() |
Core-to-Core | No scaffolds atoms were exchanged as a result of the reaction |
Title | Authors | Date | PubMed ID |
---|---|---|---|
Oxygen detoxification in the strict anaerobic archaeon Archaeoglobus fulgidus: superoxide scavenging by neelaredoxin. | Abreu IA, Saraiva LM, Carita J, Huber H, Stetter KO, Cabelli D, Teixeira M | 2000 Oct | 11069658 |
Structures of the superoxide reductase from Pyrococcus furiosus in the oxidized and reduced states. | Yeh AP, Hu Y, Jenney FE Jr, Adams MW, Rees DC | 2000 Mar 14 | 10704199 |
Reaction of the desulfoferrodoxin from Desulfoarculus baarsii with superoxide anion. Evidence for a superoxide reductase activity. | Lombard M, Fontecave M, Touati D, Nivière V | 2000 Jan 7 | 10617593 |
Anaerobic microbes: oxygen detoxification without superoxide dismutase. | Jenney FE Jr, Verhagen MF, Cui X, Adams MW | 1999 Oct 8 | 10514376 |