1.7.1.14: nitric oxide reductase [NAD(P)+, nitrous oxide-forming]
This is an abbreviated version!
For detailed information about nitric oxide reductase [NAD(P)+, nitrous oxide-forming], go to the full flat file.
Word Map on EC 1.7.1.14
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1.7.1.14
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heme
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oxysporum
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fusarium
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n2o
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denitrifying
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nitrite
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denitrification
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ferric
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dissimilatory
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cylindrocarpon
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tonkinense
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histoplasma
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copper-containing
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capsulatum
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trichosporon
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cutaneum
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p450cam
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nitroxyl
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synthesis
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degradation
- 1.7.1.14
- heme
- oxysporum
- fusarium
- n2o
-
denitrifying
- nitrite
-
denitrification
-
ferric
-
dissimilatory
- cylindrocarpon
- tonkinense
-
histoplasma
-
copper-containing
- capsulatum
-
trichosporon
- cutaneum
-
p450cam
- nitroxyl
- synthesis
- degradation
Reaction
Synonyms
Anor, Cnor1, Cnor2, CYP55A1, CYP55A2, CYP55A3, CYP55A4, CYP55A5, CYP55B1, cytochrome P-450nor, cytochrome P450 55B1, cytochrome P450 NADH-NO reductase, cytochrome P450 nitric oxide reductase, cytochrome P450 NO reductase, cytochrome P450nor, Fnor, fungal nitric oxide reductase, NADPH-dependent cytochrome P450nor, NOR, Nor1, Nor1p, P450 nitric oxide reductase, P450nor, P450nor1, P450nor2, P450norA, P450norB, Tnor
ECTree
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Systematic Name
Systematic Name on EC 1.7.1.14 - nitric oxide reductase [NAD(P)+, nitrous oxide-forming]
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nitrous oxide:NAD(P) oxidoreductase
A heme-thiolate protein (P-450). The enzyme from Fusarium oxysporum utilizes only NADH, but the isozyme from Trichosporon cutaneum utilizes both NADH and NADPH. The electron transfer from NAD(P)H to heme occurs directly, not requiring flavin or other redox cofactors.