1.17.98.4: formate dehydrogenase (hydrogenase)
This is an abbreviated version!
For detailed information about formate dehydrogenase (hydrogenase), go to the full flat file.
Word Map on EC 1.17.98.4
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1.17.98.4
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fhl
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hydrogenases
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nife-hydrogenase
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formate-dependent
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hycb
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selenopolypeptide
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molybdoenzyme
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h2-evolving
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biohydrogen
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h2-oxidizing
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54-dependent
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f0f1-atpase
- 1.17.98.4
- fhl
- hydrogenases
- nife-hydrogenase
-
formate-dependent
- hycb
-
selenopolypeptide
-
molybdoenzyme
-
h2-evolving
-
biohydrogen
-
h2-oxidizing
-
54-dependent
- f0f1-atpase
Reaction
Synonyms
benzylviologen-linked formate dehydrogenase, EC 1.1.99.33, EC 1.17.99.7, Fdh-H, FDH-O, fdhF gene product, FDHH, formate dehydrogenase (formate-hydrogen-lyase-linked), formate dehydrogenase H, formate dehydrogenase O, formate hydrogenlyase, methylviologen-dependent formate dehydrogenase, molybdenum-containing formate dehydrogenase H
ECTree
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Inhibitors
Inhibitors on EC 1.17.98.4 - formate dehydrogenase (hydrogenase)
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N3-
formate oxidation is inhibited strongly and competitively whereas CO2 reduction is inhibited weakly and not competitively; strongly inhibits the oxidation of formate, whereas CO2 reduction is inhibited only weakly and not competitively
NO2-
formate oxidation is inhibited strongly and competitively whereas CO2 reduction is inhibited weakly and not competitively; strongly inhibits the oxidation of formate, whereas CO2 reduction is inhibited only weakly and not competitively
NO3-
formate oxidation is inhibited strongly and competitively whereas CO2 reduction is inhibited weakly and not competitively; strongly inhibits the oxidation of formate, whereas CO2 reduction is inhibited only weakly and not competitively
OCN-
formate oxidation is inhibited strongly and competitively whereas CO2 reduction is inhibited weakly and not competitively; strongly inhibits the oxidation of formate, whereas CO2 reduction is inhibited only weakly and not competitively
SCN-
formate oxidation is inhibited strongly and competitively whereas CO2 reduction is inhibited weakly and not competitively; strongly inhibits the oxidation of formate, whereas CO2 reduction is inhibited only weakly and not competitively
iodoacetamide
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iodoacetamide-dependent loss of activity occurrs only when formate is present
iodoacetamide
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addition of 1 mM iodoacetamide, to enzyme preparations in pH 7 buffer containing 2 mM 2-mercaptoethanol inactivates