1.2.1.80: long-chain acyl-[acyl-carrier-protein] reductase
This is an abbreviated version!
For detailed information about long-chain acyl-[acyl-carrier-protein] reductase, go to the full flat file.

Word Map on EC 1.2.1.80
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1.2.1.80
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acyl-acps
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alkane
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oxygenase
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biofuels
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cyanobacterial
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aldehyde-deformylating
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synechococcus
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deformylating
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acetyl-coa
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acyl-coas
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elongatus
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pentadecane
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synechocystis
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prochlorococcus
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nostoc
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petroleum-based
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diesel
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petroleum-derived
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punctiforme
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drug development
- 1.2.1.80
- acyl-acps
- alkane
- oxygenase
-
biofuels
-
cyanobacterial
-
aldehyde-deformylating
- synechococcus
-
deformylating
- acetyl-coa
- acyl-coas
- elongatus
- pentadecane
- synechocystis
- prochlorococcus
- nostoc
-
petroleum-based
-
diesel
-
petroleum-derived
- punctiforme
- drug development
Reaction
Synonyms
AAR, acyl-ACP reductase, acyl-acyl carrier protein (acyl-ACP) reductase, acyl-acyl carrier protein reductase, AtFAR6, CpFAS1 acyl reductase, CpFAS1-R, DPW, fatty acyl-ACP reductase, fatty aldehyde-generating acyl-ACP reductase, Npun_R1710, sll0209
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General Information
General Information on EC 1.2.1.80 - long-chain acyl-[acyl-carrier-protein] reductase
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metabolism
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C-terminal CpFAS1-R enzyme belongs to a multifunctional Type I fatty acid synthase, CpFAS1, with at least 21 enzymatic domains, this megasynthase is predicted to function as a fatty acyl elongase
physiological function
enzyme and aldehyde-deformylating oxygenase ADO form a tight isolable complex with a Kd of 3 microM. When the aldehyde substrate is supplied to ADO by acyl-acyl carrier protein reductase, efficient in vitro turnover is observed in the absence of solubilizing agents. Catalysis by acyl-acyl carrier protein reductase proceeds via formation of a covalent intermediate involving residue C294. The enzyme specifically transfers the pro-R hydride of NADPH to the Cys294-thioester intermediate to afford its aldehyde product
physiological function
the enzyme is involved in an alkane biosynthesis pathway. It forms a complex with aldehyde-deformylating oxygenase that efficiently converts long chain fatty acyl-ACP/fatty acyl-CoA into hydrocarbon
physiological function
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enzyme and aldehyde-deformylating oxygenase ADO form a tight isolable complex with a Kd of 3 microM. When the aldehyde substrate is supplied to ADO by acyl-acyl carrier protein reductase, efficient in vitro turnover is observed in the absence of solubilizing agents. Catalysis by acyl-acyl carrier protein reductase proceeds via formation of a covalent intermediate involving residue C294. The enzyme specifically transfers the pro-R hydride of NADPH to the Cys294-thioester intermediate to afford its aldehyde product
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physiological function
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the enzyme is involved in an alkane biosynthesis pathway. It forms a complex with aldehyde-deformylating oxygenase that efficiently converts long chain fatty acyl-ACP/fatty acyl-CoA into hydrocarbon
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