MetaCyc Pathway: C4 photosynthetic carbon assimilation cycle, NAD-ME type in Cupriavidus basilensis FW507-4G11

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Carbonate dehydratase (in reverse):
CO2 + H2O→hydrogen carbonate + H+
(EC 4.2.1.1)
RR42_RS00880
RR42_RS08950
Phosphoenolpyruvate carboxylase (in reverse):
hydrogen carbonate + phosphoenolpyruvate→oxaloacetate + phosphate
(EC 4.1.1.31)
RR42_RS15905
Aspartate transaminase (in reverse):
oxaloacetate + L-glutamate→L-aspartate + 2-oxoglutarate
(EC 2.6.1.1)
RR42_RS01570
RR42_RS01590
RR42_RS02275
RR42_RS04985
RR42_RS05770
RR42_RS09190
RR42_RS09965
RR42_RS10785
RR42_RS12545
RR42_RS14560
RR42_RS15580
RR42_RS16470
RR42_RS21340
RR42_RS25980
RR42_RS26005
RR42_RS26015
RR42_RS26185
RR42_RS26625
RR42_RS28185
RR42_RS32165
RR42_RS33140
RR42_RS33805
RR42_RS35305
RR42_RS36780
L-aspartate[in]→L-aspartate[out]
No genes
Aspartate transaminase:
L-aspartate + 2-oxoglutarate→oxaloacetate + L-glutamate
(EC 2.6.1.1)
RR42_RS01570
RR42_RS01590
RR42_RS02275
RR42_RS04985
RR42_RS05770
RR42_RS09190
RR42_RS09965
RR42_RS10785
RR42_RS12545
RR42_RS14560
RR42_RS15580
RR42_RS16470
RR42_RS21340
RR42_RS25980
RR42_RS26005
RR42_RS26015
RR42_RS26185
RR42_RS26625
RR42_RS28185
RR42_RS32165
RR42_RS33140
RR42_RS33805
RR42_RS35305
RR42_RS36780
Malate dehydrogenase (in reverse):
oxaloacetate + NADH + H+→(S)-malate + NAD+
(EC 1.1.1.37; 1.1.1.38)
RR42_RS02230
RR42_RS14465
RR42_RS29130
Malate dehydrogenase (oxaloacetate-decarboxylating):
(S)-malate + NAD+→CO2 + pyruvate + NADH
(EC 1.1.1.38)
No genes
Alanine transaminase (in reverse):
pyruvate + L-glutamate→L-alanine + 2-oxoglutarate
(EC 2.6.1.2)
RR42_RS12545
RR42_RS28540
L-alanine[in]→L-alanine[out]
No genes
Alanine transaminase (in reverse):
L-alanine + 2-oxoglutarate→pyruvate + L-glutamate
(EC 2.6.1.2)
RR42_RS12545
Pyruvate, phosphate dikinase:
pyruvate + ATP + phosphate→phosphoenolpyruvate + AMP + diphosphate + H+
(EC 2.7.9.1)
No genes

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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