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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Engineering
Engineering on EC 1.12.2.1 - cytochrome-c3 hydrogenase
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V74Q
Solidesulfovibrio fructosivorans
while wild-type tends to attract O2 molecules close to the active site, the V74Q mutant favors the localization of O2 about 20 A away from it. In the mutant, the glutamine residue produces an energy barrier height higher than the one found when a valine is present as in wild-type. In the V74Q mutant, the enzyme inhibition by O2 is lowered from both a kinetic and a thermodynamic point of view with respect to the wild-type enzyme
additional information
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a cytochrome c3 mutant strain I2 is impaired in reduction of uranium(VI) utilizing electrons from donors lactate, pyruvate or hydrogen transferred via cytochrome c3, the strongest effect is senn with hydrogen as electron donor
additional information
Hyn mutant impairs syntrophic growth but has little effect on growth via sulfate respiration. Cocultures established with DETLAhyd and DELTAhyn-1 mutants achieve cell densities comparable to those of the wild-type on both lactate and pyruvate, but the growth rates are reduced