MetaCyc Pathway: (8E,10E)-dodeca-8,10-dienol biosynthesis in Pseudomonas fluorescens FW300-N2E3

Add experiment(s):


palmitoyl-CoA[in] + an oxidized electron-transfer flavoprotein[in] + H+[in]→(2E)-hexadec-2-enoyl-CoA[in] + a reduced electron-transfer flavoprotein[in] (EC 1.3.8.9)
No genes
(8E,10E)-dodeca-8,10-dienoate + 2 NADPH + 3 H+→(8E,10E)-dodeca-8,10-dienol + 2 NADP+ + H2O
No genes
Enoyl-CoA hydratase (in reverse):
(2E)-hexadec-2-enoyl-CoA + H2O→(S)-3-hydroxyhexadecanoyl-CoA
(EC 4.2.1.17)
AO353_00510
AO353_01135
AO353_01155
AO353_03780
AO353_17555
AO353_19125
AO353_23055
AO353_24830
AO353_25665
AO353_25675
AO353_26540
Long-chain-3-hydroxyacyl-CoA dehydrogenase:
(S)-3-hydroxyhexadecanoyl-CoA + NAD+→3-oxopalmitoyl-CoA + NADH + H+
(EC 1.1.1.211)
AO353_00510
AO353_01155
Acetyl-CoA C-myristoyltransferase (in reverse):
3-oxopalmitoyl-CoA + coenzyme A→myristoyl-CoA + acetyl-CoA
(EC 2.3.1.155)
AO353_05785
AO353_25685
myristoyl-CoA + an oxidized electron-transfer flavoprotein + H+→(2E)-tetradec-2-enoyl-CoA + a reduced electron-transfer flavoprotein (EC 1.3.8.8)
No genes
Enoyl-CoA hydratase (in reverse):
(2E)-tetradec-2-enoyl-CoA + H2O→(S)-3-hydroxytetradecanoyl-CoA
(EC 4.2.1.17)
AO353_00510
AO353_01135
AO353_01155
AO353_03780
AO353_17555
AO353_19125
AO353_23055
AO353_24830
AO353_25665
AO353_25675
AO353_26540
(S)-3-hydroxytetradecanoyl-CoA + NAD+→3-oxomyristoyl-CoA + NADH + H+
AO353_00510
AO353_01155
Acetyl-CoA C-acyltransferase (in reverse):
3-oxomyristoyl-CoA + coenzyme A→lauroyl-CoA + acetyl-CoA
(EC 2.3.1.16)
AO353_00505
AO353_01065
AO353_01160
AO353_05785
AO353_13880
AO353_17205
AO353_25685
AO353_27530
AO353_27945
lauroyl-CoA + 2 a ferrocytochrome b5 + dioxygen + 2 H+→(9E)-dodecenoyl-CoA + 2 a ferricytochrome b5 + 2 H2O
No genes
(9E)-dodecenoyl-CoA + 2 a ferrocytochrome b5 + dioxygen + 2 H+→(8E,10E)-dodeca-8,10-dienoyl-CoA + 2 a ferricytochrome b5 + 2 H2O
No genes

Links:

Candidate genes for each reaction are identified from best hits to MetaCyc; by matching EC numbers (which are assigned by TIGRFam, SEED, or best hits to KEGG); or by matching SEED roles to KEGG reactions to MetaCyc reactions. See the "Protein" tab of each gene for more information