1.7.2.6: hydroxylamine dehydrogenase
This is an abbreviated version!
For detailed information about hydroxylamine dehydrogenase, go to the full flat file.
Word Map on EC 1.7.2.6
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1.7.2.6
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ammonia
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monooxygenase
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nitrification
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metagenomic
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nitrify
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nitrospira
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europaea
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no2
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nitrosomonas
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comammox
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phenylhydrazine
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ammonium-oxidizing
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genome-centric
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analysis
- 1.7.2.6
- ammonia
- monooxygenase
-
nitrification
-
metagenomic
-
nitrify
- nitrospira
- europaea
- no2
- nitrosomonas
-
comammox
- phenylhydrazine
-
ammonium-oxidizing
-
genome-centric
- analysis
Reaction
+ + 4 ferricytochrome c = + 4 ferrocytochrome c + 5 H+
Synonyms
EC 1.7.3.4, HAO, haoA, HCR, HOA, hydroxylamine cytochrome c554 oxidoreductase, hydroxylamine oxidase, hydroxylamine oxidoreductase, hydroxylamine-cytochrome c reductase, hydroxylamine:oxygen oxidoreductase, mHAO, NeHAO, NirK, NoHAO
ECTree
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General Information
General Information on EC 1.7.2.6 - hydroxylamine dehydrogenase
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physiological function
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no single copy of hao is essential to the cell
physiological function
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the anammox HAO can catalyze the interconversion of NO and NH2OH. The anammox HAO functions to adjust anammox by inter-conversion of NO and NH2OH depending on the redox potential of the physiological electron transfer protein in anammox bacteria
physiological function
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the enzyme allows methanotrophs to thrive under high ammonia concentrations in natural and engineered ecosystems, such as those observed in rice paddy fields, landfills, or volcanic mud pots, by preventing the accumulation of inhibitory hydroxylamine
physiological function
-
the enzyme allows methanotrophs to thrive under high ammonia concentrations in natural and engineered ecosystems, such as those observed in rice paddy fields, landfills, or volcanic mud pots, by preventing the accumulation of inhibitory hydroxylamine
-
physiological function
-
no single copy of hao is essential to the cell
-
physiological function
-
the anammox HAO can catalyze the interconversion of NO and NH2OH. The anammox HAO functions to adjust anammox by inter-conversion of NO and NH2OH depending on the redox potential of the physiological electron transfer protein in anammox bacteria
-