1.3.1.8: acyl-CoA dehydrogenase (NADP+)
This is an abbreviated version!
For detailed information about acyl-CoA dehydrogenase (NADP+), go to the full flat file.
Word Map on EC 1.3.1.8
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1.3.1.8
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enoyl-coas
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acyl-coas
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crotonyl-coa
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very-long-chain
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vlcfas
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butyryl-coa
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dehydrase
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3-hydroxyacyl-coa
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beta-hydroxyacyl-coa
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decanoyl-coa
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acetyl-coa-dependent
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octanoyl-coa
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elongase
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leek
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nadph-specific
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collinus
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trans-enoyl-coas
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synthesis
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biotechnology
- 1.3.1.8
- enoyl-coas
- acyl-coas
- crotonyl-coa
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very-long-chain
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vlcfas
- butyryl-coa
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dehydrase
- 3-hydroxyacyl-coa
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beta-hydroxyacyl-coa
- decanoyl-coa
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acetyl-coa-dependent
- octanoyl-coa
- elongase
- leek
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nadph-specific
- collinus
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trans-enoyl-coas
- synthesis
- biotechnology
Reaction
Synonyms
2-enoyl-CoA reductase, 2-trans enoyl-CoA reductase, 2-trans-enoyl-CoA reductase, acyl coenzyme A dehydrogenase (nicotinamide adenine dinucleotide phosphate), CCR, crotonyl CoA reductase, crotonyl coenzyme A reductase, crotonyl-CoA reductase, crotonyl-coenzyme A reductase, dehydrogenase, acyl coenzyme A (nicotinamide adenine dinucleotide phosphate), enoyl coenzyme A reductase, enoyl-CoA reductase, MCAD, medium-chain acyl-CoA dehydrogenase, NADPH:enoyl-CoA oxidoreductase, NbECR, RCCR, trans-2-enoyl-CoA reductase
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Natural Substrates Products
Natural Substrates Products on EC 1.3.1.8 - acyl-CoA dehydrogenase (NADP+)
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REACTION DIAGRAM
5-hydroxyundec-cis-2-enoyl-CoA + NADPH
5-hydroxyundecanoyl-CoA + NADP+
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crotonyl-CoA + reduced acceptor
butyryl-CoA + oxidized acceptor
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enzyme is involved in synthesizing methylmalonyl-CoA precursors for monensin biosynthesis, pathway flux, overview
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primary fluorescent chlorophyll catabolite + NADP+
red chlorophyll catabolite + NADPH + H+
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stereospecific reaction. RCCR catalyzes the ferredoxin-dependent and site-specific reduction of the C20/C1 double bond of red chlorophyll catabolite, RCC, the catabolic intermediate produced in chlorophyll degradation
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r
eicosanoyl-CoA + NADP+
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enzyme is part of acyl-CoA elongase complex responsible for fatty acid elongation
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trans-2-eicosenoyl-CoA + NADPH
eicosanoyl-CoA + NADP+
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enzyme is part of acyl-CoA elongase complex responsible for fatty acid elongation
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trans-2-eicosenoyl-CoA + NADPH
eicosanoyl-CoA + NADP+
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enzyme activity is higher in neurological Trembler mouse mutant than in wild-type
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additional information
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active as part of fatty acid synthetase by incorporation of acetyl-CoA in mitochondria and of malonyl-CoA in cytosol
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additional information
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involvement in malonyl-CoA fatty acid elongation system II
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additional information
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the enzyme catalyzes the last step in synthesis of very long fatty acid. NbECR activity is essential for membrane biogenesis. Loss of NbECR function affects biogenesis of cellular membranes including the plasma membrane and the thylakoid membrane
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additional information
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the enzyme catalyzes the last step in synthesis of very long fatty acid. NbECR activity is essential for membrane biogenesis. Loss of NbECR function affects biogenesis of cellular membranes including the plasma membrane and the thylakoid membrane
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additional information
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specific for alpha/beta-unsaturated CoA derivatives with chain lengths of 4-16 C atoms, neither involved in beta-oxidation of fatty acids nor de novo-synthesis of fatty acids via malonyl-CoA
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additional information
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involvement in malonyl-CoA fatty acid elongation system II
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additional information
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involvement in malonyl-CoA fatty acid elongation system II
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