MetaCyc Pathway: superpathway of anaerobic energy metabolism (invertebrates) in Pseudomonas putida KT2440

Add experiment(s):


Phosphoenolpyruvate carboxykinase (GTP) (in reverse):
phosphoenolpyruvate + CO2 + GDP→oxaloacetate + GTP
(EC 4.1.1.32)
No genes
Pyruvate kinase (in reverse):
phosphoenolpyruvate + ADP + H+→pyruvate + ATP
(EC 2.7.1.40)
PP_1362
PP_4301
Phosphoenolpyruvate carboxykinase (GTP) (in reverse):
phosphoenolpyruvate + CO2 + IDP→oxaloacetate + ITP
(EC 4.1.1.32)
No genes
Alanine transaminase (in reverse):
pyruvate + L-glutamate→2-oxoglutarate + L-alanine
(EC 2.6.1.2)
PP_0817
PP_1872
Malate dehydrogenase (in reverse):
oxaloacetate + NADH + H+→(S)-malate + NAD+
(EC 1.1.1.37; 1.1.1.38)
PP_0654
PP_2835
Malate dehydrogenase (oxaloacetate-decarboxylating):
(S)-malate + NAD+→pyruvate + CO2 + NADH
(EC 1.1.1.38)
No genes
Alanine racemase:
L-alanine→D-alanine
(EC 5.1.1.1; 5.1.1.10)
PP_3722
PP_5269
Aspartate transaminase:
2-oxoglutarate + L-aspartate→L-glutamate + oxaloacetate
(EC 2.6.1.1)
PP_0486
PP_0858
PP_1109
PP_1872
PP_2642
PP_2948
PP_3544
PP_3750
PP_3786
PP_4197
PP_5275
PP_5342
Fumarate hydratase:
(S)-malate→fumarate + H2O
(EC 4.2.1.2)
PP_0897
PP_0944
PP_1755
pyruvate + coenzyme A + NAD+→CO2 + acetyl-CoA + NADH (EC 1.2.1.104)
PP_0338
Succinate dehydrogenase (ubiquinone) (in reverse):
fumarate[in] + a rhodoquinol→succinate[in] + a rhodoquinone
(EC 1.3.5.1)
No genes
acetyl-CoA + succinate→acetate + succinyl-CoA (EC 2.8.3.18)
PP_0154
succinate + propanoyl-CoA→succinyl-CoA + propanoate (EC 2.8.3.27)
No genes
Methylmalonyl-CoA mutase (in reverse):
succinyl-CoA→(R)-methylmalonyl-CoA
(EC 5.4.99.2)
No genes
Succinate--CoA ligase (ADP-forming) (in reverse):
succinyl-CoA + ADP + phosphate→succinate + ATP + coenzyme A
(EC 6.2.1.5)
PP_4185
PP_4186
Methylmalonyl-CoA epimerase:
(R)-methylmalonyl-CoA→(S)-methylmalonyl-CoA
(EC 5.1.99.1)
No genes
Propionyl-CoA carboxylase (in reverse):
(S)-methylmalonyl-CoA + ADP + H+ + phosphate→propanoyl-CoA + ATP + hydrogen carbonate
(EC 6.4.1.3)
PP_1607
PP_1996

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