CcNiR: Difference between revisions

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NO2- + 4 H+ + 6 ferricytochrome c = NH4+ + 6 ferrocytochrome c + 2 H2O
NO2- + 4 H+ + 6 ferricytochrome c = NH4+ + 6 ferrocytochrome c + 2 H2O


The physiological form of the enzyme is believed to be a double trimer of 2 NrfA and 1 NrfH subunits (PDB entry [[2j7a]]). The catalytic subunit NrfA is a periplasmic membrane-associated pentaheme cytochrome c where the short distances between <scene name='CcNiR/Hemes3/5'>hemes</scene> allow a fast and efficient electron transfer. The active site has been reported as an unusual lysine-coordinated high-spin heme. NrfH is a small membrane-bound cytochrome comprising four c-type heme groups and it serves a double purpose. On one hand, it anchors the catalytic subunits to the membrane. On the other hand, it serves as a quinol oxidase, transferring electrons from the quinone pool to the catalytic subunits. <ref>pmid 14511372</ref> <ref>pmid 12618432</ref> <ref>pmid 8798514</ref> <ref>pmid 17207484</ref> <ref>pmid 20689707</ref> <ref>pmid 17207484</ref>
The physiological form of the enzyme is believed to be a double trimer of 2 NrfA and 1 NrfH subunits ([[2j7a]]). The catalytic subunit NrfA is a periplasmic membrane-associated pentaheme cytochrome c where the short distances between <scene name='CcNiR/Hemes3/5'>hemes</scene> allow a fast and efficient electron transfer. The active site has been reported as an unusual lysine-coordinated high-spin heme. NrfH is a small membrane-bound cytochrome comprising four c-type heme groups and it serves a double purpose. On one hand, it anchors the catalytic subunits to the membrane. On the other hand, it serves as a quinol oxidase, transferring electrons from the quinone pool to the catalytic subunits. <ref>pmid 14511372</ref> <ref>pmid 12618432</ref> <ref>pmid 8798514</ref> <ref>pmid 17207484</ref> <ref>pmid 20689707</ref> <ref>pmid 17207484</ref>





Revision as of 12:30, 6 September 2012

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CYTOCHROME C NITRITE REDUCTASE FROM DESULFOVIBRIO DESULFURICANS ATCC 27774 (PDB entry 1oah)

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Cytochrome c nitrite reductase is a multicenter enzyme that uses a five-coordinated heme to perform the reduction of nitrite to ammonium in a six-electron transfer reaction. In the sulfate reducing bacterium Desulfovibrio desulfuricans ATCC 27774, the enzyme is purified as a NrfA4NrfH4 complex that houses 28 hemes.

The catalytic reaction occurs at a high-spin (5-coordinated) heme that is located at the pentahemic subunit NrfA which is strongly bound to its physiological electron donor, the smaller hydrophobic polypeptide tetrahemic NrfH, composed of 4 c-types hemes; in vitro, the protein complexes associate each other forming huge aggregates (min. 890 kDa). The overall haem arrangement of the NrfHA complex is quite surprising, as the NrfH haem groups are positioned non-symmetrically with respect to the two NrfA molecules.


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