MetaCyc Pathway: pyruvate fermentation to hexanol (engineered) in Marinobacter adhaerens HP15

Add experiment(s):


Pyruvate synthase:
pyruvate + coenzyme A + 2 an oxidized ferredoxin [iron-sulfur] cluster→acetyl-CoA + CO2 + H+ + 2 a reduced ferredoxin [iron-sulfur] cluster
(EC 1.2.7.1)
HP15_3392
Acetyl-CoA C-acyltransferase:
2 acetyl-CoA→acetoacetyl-CoA + coenzyme A
(EC 2.3.1.16; 2.3.1.9)
HP15_1009
HP15_1233
HP15_1513
HP15_2344
HP15_2423
HP15_2695
HP15_2996
HP15_35
HP15_3943
HP15_49
HP15_5
3-hydroxyacyl-CoA dehydrogenase (in reverse):
acetoacetyl-CoA + NADH + H+→(S)-3-hydroxybutanoyl-CoA + NAD+
(EC 1.1.1.35)
HP15_1232
HP15_1512
HP15_3941
HP15_48
(S)-3-hydroxybutanoyl-CoA→crotonyl-CoA + H2O (EC 4.2.1.150)
HP15_1141
HP15_12
HP15_1512
HP15_1737
HP15_1740
HP15_2575
HP15_2692
HP15_3941
HP15_4082
HP15_4094
HP15_55
HP15_864
Trans-2-enoyl-CoA reductase (NAD(+)) (in reverse):
crotonyl-CoA + NADH + H+→butanoyl-CoA + NAD+
(EC 1.3.1.44)
HP15_1008
HP15_3215
HP15_3375
HP15_3578
HP15_3928
HP15_4141
HP15_54
HP15_56
HP15_618
HP15_907
Acetyl-CoA C-acyltransferase:
acetyl-CoA + butanoyl-CoA→3-oxohexanoyl-CoA + coenzyme A
(EC 2.3.1.16; 2.3.1.9)
HP15_1009
HP15_1233
HP15_1513
HP15_2344
HP15_2423
HP15_2695
HP15_2996
HP15_35
HP15_3943
HP15_49
HP15_5
3-hydroxyacyl-CoA dehydrogenase (in reverse):
3-oxohexanoyl-CoA + NADH + H+→(S)-3-hydroxyhexanoyl-CoA + NAD+
(EC 1.1.1.35)
HP15_1232
HP15_1512
HP15_3941
HP15_48
Long-chain-enoyl-CoA hydratase:
(S)-3-hydroxyhexanoyl-CoA→(2E)-hex-2-enoyl-CoA + H2O
(EC 4.2.1.74)
HP15_1141
HP15_12
HP15_1512
HP15_1737
HP15_1740
HP15_2575
HP15_2692
HP15_3941
HP15_4082
HP15_4094
HP15_55
HP15_864
Trans-2-enoyl-CoA reductase (NAD(+)) (in reverse):
(2E)-hex-2-enoyl-CoA + NADH + H+→hexanoyl-CoA + NAD+
(EC 1.3.1.44)
No genes
hexanoyl-CoA + NAD(P)H + H+→1-hexanal + coenzyme A + NAD(P)+
No genes
1-hexanal + NADH + H+→hexan-1-ol + NAD+
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