1.12.2.1: cytochrome-c3 hydrogenase
This is an abbreviated version!
For detailed information about cytochrome-c3 hydrogenase, go to the full flat file.
Word Map on EC 1.12.2.1
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1.12.2.1
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hydrogenases
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desulfovibrio
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nickel
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hydride
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eutropha
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h-cluster
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iron-sulfur
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ralstonia
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o2-tolerant
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nife-hydrogenases
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hildenborough
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dihydrogen
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hyperfine
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electrochemistry
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diiron
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sulfate-reducing
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fe-hydrogenase
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miyazaki
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heterolytic
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desulfuricans
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oxygen-tolerant
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electrocatalytic
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allochromatium
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metallochaperone
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overpotential
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subcluster
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pasteurianum
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fructosovorans
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organometallic
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hydf
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dinuclear
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bimetallic
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co-inhibited
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nickel-iron
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vinosum
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h2-oxidizing
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hydrogen-producing
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maturase
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environmental protection
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fhl
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tetraheme
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industry
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metallocenter
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hydrogenlyase
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hyscore
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nickel-binding
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synthesis
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h2-dependent
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electrocatalysts
- 1.12.2.1
- hydrogenases
- desulfovibrio
- nickel
-
hydride
- eutropha
-
h-cluster
-
iron-sulfur
- ralstonia
-
o2-tolerant
- nife-hydrogenases
- hildenborough
-
dihydrogen
-
hyperfine
-
electrochemistry
-
diiron
-
sulfate-reducing
- fe-hydrogenase
- miyazaki
-
heterolytic
- desulfuricans
-
oxygen-tolerant
-
electrocatalytic
-
allochromatium
-
metallochaperone
-
overpotential
-
subcluster
- pasteurianum
- fructosovorans
-
organometallic
- hydf
-
dinuclear
-
bimetallic
-
co-inhibited
-
nickel-iron
- vinosum
-
h2-oxidizing
-
hydrogen-producing
-
maturase
- environmental protection
- fhl
-
tetraheme
- industry
-
metallocenter
- hydrogenlyase
-
hyscore
-
nickel-binding
- synthesis
-
h2-dependent
-
electrocatalysts
Reaction
+ 2 ferricytochrome c3 = 2 H+ + 2 ferrocytochrome c3
Synonyms
cytochrome c3 hydrogenase, cytochrome c3 reductase, cytochrome hydrogenase, cytochrome-c3 hydrogenase, Fe-only hydrogenase, H2:ferricytochrome c3 oxidoreductase, H2ase, hyd B, HydAB, hydrogenase, hydrogenase, cytochrome, Hyn-1B, Hyn1 hydrogenase, HynAB-1, HysAB, [FeFe] hydrogenase, [Fe] hydrogenase, [Fe]-hydrogenase, [NiFeSe] Hase, [NiFeSe] hydrogenase, [NiFe] Hase, [NiFe] hydrogenase, [NiFe] hydrogenase 1, [NiFe]-hydrogenase
ECTree
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General Stability
General Stability on EC 1.12.2.1 - cytochrome-c3 hydrogenase
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operational stability of enzyme encapsulated in sodium dioctylsulfosuccinate reversed micelles and dependence of stability on the water content, enzyme concentration, pH, temperature and organic solvents, deactivation is strongly dependent on the cohesion of the micellar aggregates containing the enzyme
Megalodesulfovibrio gigas
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sodium di-2-ethylhexylsulfosuccinate seems to denaturate the enzyme
Megalodesulfovibrio gigas
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