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The expected taxonomic range for this enzyme is: Escherichia coli
Synonyms cis-2-enoyl-coenzyme A reductase, NADPH-dependent cis-enoyl-CoA reductase, reductase, cis-2-enoyl coenzyme A, more
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cis-2-enoyl-coenzyme A reductase
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NADPH-dependent cis-enoyl-CoA reductase
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reductase, cis-2-enoyl coenzyme A
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acyl-CoA + NADP+ = cis-2,3-dehydroacyl-CoA + NADPH + H+
acyl-CoA + NADP+ = cis-2,3-dehydroacyl-CoA + NADPH + H+
mechanism: anti addition via 2Si, 2Re attack on cis double bond
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acyl-CoA + NADP+ = cis-2,3-dehydroacyl-CoA + NADPH + H+
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acyl-CoA:NADP+ cis-2-oxidoreductase
Not identical with EC 1.3.1.38 trans-2-enoyl-CoA reductase (NADPH) [cf. EC 1.3.1.8 acyl-CoA dehydrogenase (NADP+)].
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cis-2-decenoyl-CoA + NADPH + H+
decanoyl-CoA + NADP+
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Substrates: no reduction of cis-3-enoyl substrates Products: -
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cis-2-dodecenoyl-CoA + NADPH + H+
dodecanoyl-CoA + NADP+
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Substrates: - Products: -
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cis-2-octenoyl-CoA + NADPH + H+
octanoyl-CoA + NADP+
cis-2-octenoyl-CoA + NADPH + H+
octanoyl-CoA + NADP+
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Substrates: - Products: -
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cis-2-octenoyl-CoA + NADPH + H+
octanoyl-CoA + NADP+
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Substrates: stereochemistry Products: -
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iodoacetic acid
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1 mM, 34% inhibition
p-hydroxymercuribenzoate
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1 mM, 77% inhibition
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0.02
cis-2-octenoyl-CoA
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Highest Expressing Human Cell Lines
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45
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no loss of activity after 30 min
55
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10 min, inactivation
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-20°C, ammonium sulfate precipitate
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Mizugaki, M.; Unuma, T.; Nishimaki, T.; Shiraishi, T.; Kawaguchi, A.; Saito, K.; Okuda, S.; Yamanaka, H.
Studies on the the metabolism of unsaturated fatty acids. VI. Stereochemical studies of the reaction catalyzed by cis-2-enoyl-coenzyme A reductase of escherichia coli
Chem. Pharm. Bull.
30
2155-2160
1982
Escherichia coli
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Mizugaki, M.; Unuma, T.; Yamanaka, H.
Studies on the metabolism of unsaturated fatty acids. II. Separation and general properties of reduced nicotinamide adenine dinucleotide phosphate dependent cis-2-enoyl-coenzyme A reductase from Escherichia coli K-12
Chem. Pharm. Bull.
27
2334-2337
1979
Escherichia coli
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Mizugaki, M.; Ito, Y.; Hoshino, T.; Shiraishi, t.; Yamanaka, H.
Studies on the metabolism of unsaturated fatty acids. V. Isomerization of thiol esters of cis-2-alkenoic acids during their preparation and alkaline hydrolysis
Chem. Pharm. Bull.
30
206-213
1982
Escherichia coli
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