1.8.1.14: CoA-disulfide reductase
This is an abbreviated version!
For detailed information about CoA-disulfide reductase, go to the full flat file.
Word Map on EC 1.8.1.14
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1.8.1.14
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staphylococcus
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aureus
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coash
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burgdorferi
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horikoshii
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borrelia
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polysulfide
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mallett
-
rhodanese
-
furiosus
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claiborne
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anthracis
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spirochetal
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fad-dependent
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fahey
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multiwavelength
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nadph-binding
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persulfide
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nymphs
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enzootic
-
newton
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karplus
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nucleotide-disulfide
- 1.8.1.14
- staphylococcus
- aureus
- coash
- burgdorferi
- horikoshii
- borrelia
- polysulfide
-
mallett
- rhodanese
- furiosus
-
claiborne
- anthracis
-
spirochetal
-
fad-dependent
-
fahey
-
multiwavelength
-
nadph-binding
- persulfide
-
nymphs
-
enzootic
-
newton
-
karplus
-
nucleotide-disulfide
Reaction
Synonyms
BACoADR, BB0728, CoA disulfide reductase, CoA-disulfide reductase (NADH), CoA-disulfide reductase (NADH2), CoADR, coenzyme A disulfide reductase, coenzyme A disulphide reductase, coenzyme A-disulfide reductase, EC 1.6.4.10, NADH-dependent coenzyme A disulfide reductase, NADH2:CoA-disulfide oxidoreductase, NADH:CoA-disulfide oxidoreductase, PH0572
ECTree
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Cofactor
Cofactor on EC 1.8.1.14 - CoA-disulfide reductase
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NADH
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both NADPH and NADH are used efficiently, preference for NADPH with Km-value about eightfold lower than for NADH
NADH
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CoADR exhibits dual specificity with respect to the NAD(P)H substrate
NADH
the turnover number of the enzyme with NADPH is roughly 1.5-2 times greater than with NADH (depending on the oxidizing substrate), indicating that the enzyme is able to use either of the reduced pyridine nucleotides in vivo
NADPH
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both NADPH and NADH are used efficiently, preference for NADPH with Km-value about eightfold lower than for NADH
NADPH
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CoADR exhibits dual specificity with respect to the NAD(P)H substrate
NADPH
the enzyme shows a preference for NADPH (10fold lower Km), although it makes efficient use of NADH as well
NADPH
the turnover number of the enzyme with NADPH is roughly 1.5-2 times greater than with NADH (depending on the oxidizing substrate), indicating that the enzyme is able to use either of the reduced pyridine nucleotides in vivo