Nitrite reductase
From Proteopedia
(Difference between revisions)
| Line 72: | Line 72: | ||
**[[1n70]] - RsNIR (mutant) + Mg + Cu<br /> | **[[1n70]] - RsNIR (mutant) + Mg + Cu<br /> | ||
**[[3wi9]] - GkNIR + Zn + Cu <br /> | **[[3wi9]] - GkNIR + Zn + Cu <br /> | ||
| + | **[[5onx]], [[5ony]] - NIR + Zn + Cu – ''Alcaligenes xylosoxydans''<br /> | ||
*Cu-containing nitrite reductase binary complex | *Cu-containing nitrite reductase binary complex | ||
| Line 89: | Line 90: | ||
**[[1wa2]] - AxNIR (mutant) + NO2 + Zn + Cu<br /> | **[[1wa2]] - AxNIR (mutant) + NO2 + Zn + Cu<br /> | ||
**[[5b1j]] - AxNIR + pseudoazurin + Cu <br /> | **[[5b1j]] - AxNIR + pseudoazurin + Cu <br /> | ||
| - | **[[2bwd]], [[2bwi]] - AcNIR + NO2 + Cu<br /> | + | **[[2bwd]], [[2bwi]], [[5og2]], [[5og3]], [[5og4]], [[5og5]], [[5og6]], [[5ogf]], [[5ogg]], [[5of5]], [[5of6]], [[5of7]], [[5of8]], [[5ofc]], [[5ofd]], [[5ofe]], [[5off]], [[5ofg]], [[5ofh]], [[5i6k]], [[5i6m]], [[5i6o]], [[5akr]] - AcNIR + NO2 + Cu<br /> |
| + | **[[4csz]] - AcNIR (mutant) + NO2 + Cu <br /> | ||
| + | **[[4csp]] - AcNIR (mutant) + Zn + Cu <br /> | ||
**[[2y1a]] - AcNIR + NO + Cu<br /> | **[[2y1a]] - AcNIR + NO + Cu<br /> | ||
**[[2dws]], [[2dwt]] - RsNIR + NO2 + Cu<br /> | **[[2dws]], [[2dwt]] - RsNIR + NO2 + Cu<br /> | ||
| Line 105: | Line 108: | ||
**[[3bng]] - WsNIR (mutant) <br /> | **[[3bng]] - WsNIR (mutant) <br /> | ||
**[[1gu6]], [[2rdz]], [[3tor]] – EcNIR – ''Escherichia coli''<br /> | **[[1gu6]], [[2rdz]], [[3tor]] – EcNIR – ''Escherichia coli''<br /> | ||
| - | **[[2rf7]] - EcNIR (mutant) <br /> | + | **[[2rf7]], [[4wjy]] - EcNIR (mutant) <br /> |
**[[2jo6]] – EcNIR small subunit – NMR<BR /> | **[[2jo6]] – EcNIR small subunit – NMR<BR /> | ||
**[[2jza]] - NIR small subunit – ''Pectobacterium atrosepticum'' - NMR<BR /> | **[[2jza]] - NIR small subunit – ''Pectobacterium atrosepticum'' - NMR<BR /> | ||
| Line 121: | Line 124: | ||
**[[1cno]] – NIR – ''Pseudomonas nautica''<br /> | **[[1cno]] – NIR – ''Pseudomonas nautica''<br /> | ||
**[[3ubr]] – SoNIR – ''Shewanella oneidensis''<br /> | **[[3ubr]] – SoNIR – ''Shewanella oneidensis''<br /> | ||
| - | **[[3sqx]] – | + | **[[3sqx]] – TpNIR – ''Thioalkalivibrio paradoxus''<br /> |
*Heme-containing nitrite reductase binary complex | *Heme-containing nitrite reductase binary complex | ||
| Line 130: | Line 133: | ||
**[[3bnf]] - WsNIR + sulfite <BR /> | **[[3bnf]] - WsNIR + sulfite <BR /> | ||
**[[2vr0]] - DvNIR + HQNO inhibitor<br /> | **[[2vr0]] - DvNIR + HQNO inhibitor<br /> | ||
| - | **[[3ziy]], [[4ax3]] – RpNIR + Cu – ''Ralstonia pickettii''<br /> | + | **[[3ziy]], [[4ax3]], [[6fja]], [[6f1q]] – RpNIR + Cu – ''Ralstonia pickettii''<br /> |
**[[3ayf]] – NIR + Zn – ''Geobacillus stearothermophilus''<br /> | **[[3ayf]] – NIR + Zn – ''Geobacillus stearothermophilus''<br /> | ||
**[[2yqb]], [[3zbm]] – RpNIR (mutant) + Cu <br /> | **[[2yqb]], [[3zbm]] – RpNIR (mutant) + Cu <br /> | ||
**[[3o0r]] – PaNIR + antibody<br /> | **[[3o0r]] – PaNIR + antibody<br /> | ||
**[[5guw]] – PaNIR + nitric oxide reductase<br /> | **[[5guw]] – PaNIR + nitric oxide reductase<br /> | ||
| + | **[[3sxq]] – TpNIR + Co<br /> | ||
*Heme-containing nitrite reductase binary complex with cyanide | *Heme-containing nitrite reductase binary complex with cyanide | ||
| Line 146: | Line 150: | ||
**[[1nno]] - PaNIR + NO<br /> | **[[1nno]] - PaNIR + NO<br /> | ||
**[[1hzv]] - PaNIR (mutant) + NO<br /> | **[[1hzv]] - PaNIR (mutant) + NO<br /> | ||
| - | **[[1aom]], [[1aoq]] - PpNIR + NO + NO2 | + | **[[1aom]], [[1aoq]], [[5ocb]], [[5ocf]] - PpNIR + NO + NO2<br /> |
| + | ** [[5obo]] - PpNIR (mutant) + Cu + NO2<br /> | ||
*Heme-containing nitrite reductase binary complex with nitrite | *Heme-containing nitrite reductase binary complex with nitrite | ||
Revision as of 09:10, 14 August 2018
| |||||||||||
3D structures of nitrite reductase
Updated on 14-August-2018
References
- ↑ 1.0 1.1 1.2 Youngblut M, Judd ET, Srajer V, Sayyed B, Goelzer T, Elliott SJ, Schmidt M, Pacheco AA. Laue crystal structure of Shewanella oneidensis cytochrome c nitrite reductase from a high-yield expression system. J Biol Inorg Chem. 2012 Mar 2. PMID:22382353 doi:10.1007/s00775-012-0885-0

