MetaCyc Pathway: L-glutamate and L-glutamine biosynthesis in Pseudomonas fluorescens FW300-N2E2

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Glutamate dehydrogenase (NAD(P)(+)) (in reverse):
2-oxoglutarate + ammonium + NAD(P)H + H+→L-glutamate + NAD(P)+ + H2O
(EC 1.4.1.3)
No genes
Glutamate synthase (ferredoxin) (in reverse):
2-oxoglutarate + L-glutamine + 2 H+ + 2 a reduced ferredoxin [iron-sulfur] cluster→2 L-glutamate + 2 an oxidized ferredoxin [iron-sulfur] cluster
(EC 1.4.7.1)
Pf6N2E2_5461
Glutamate synthase (NADH) (in reverse):
2-oxoglutarate + L-glutamine + NADH + H+→2 L-glutamate + NAD+
(EC 1.4.1.14)
Pf6N2E2_3751
Pf6N2E2_497
Glutamate synthase (NADPH):
L-glutamine + H2O→L-glutamate + ammonia + H+
(EC 1.4.1.13; 1.4.1.14; 1.4.7.1; 2.6.1.85; 3.5.1.2; 3.5.1.38; 4.1.3.27; 4.3.2.10; 4.3.3.6; 6.3.4.2; 6.3.5.13; 6.3.5.2; 6.3.5.4; 6.3.5.5; 6.3.5.6; 6.3.5.7)
Pf6N2E2_1327
Pf6N2E2_1717
Pf6N2E2_1718
Pf6N2E2_1828
Pf6N2E2_2102
Pf6N2E2_2224
Pf6N2E2_2471
Pf6N2E2_2542
Pf6N2E2_2604
Pf6N2E2_2840
Pf6N2E2_2847
Pf6N2E2_2929
Pf6N2E2_3050
Pf6N2E2_3151
Pf6N2E2_3164
Pf6N2E2_3288
Pf6N2E2_3289
Pf6N2E2_3290
Pf6N2E2_3364
Pf6N2E2_3365
Pf6N2E2_3403
Pf6N2E2_3707
Pf6N2E2_3751
Pf6N2E2_3752
Pf6N2E2_4822
Pf6N2E2_4824
Pf6N2E2_4916
Pf6N2E2_497
Pf6N2E2_5461
Pf6N2E2_5644
Pf6N2E2_5756
Pf6N2E2_6001
Pf6N2E2_6056
Glutamate--ammonia ligase:
L-glutamate + ammonium + ATP→L-glutamine + ADP + H+ + phosphate
(EC 6.3.1.2)
Pf6N2E2_2177
Pf6N2E2_2730
Pf6N2E2_3821
Pf6N2E2_4509
Pf6N2E2_4511
Pf6N2E2_5686
Glutamate dehydrogenase (NADP(+)) (in reverse):
2-oxoglutarate + ammonium + NADPH + H+→L-glutamate + NADP+ + H2O
(EC 1.4.1.4)
Pf6N2E2_3751
Glutamate synthase (NADPH) (in reverse):
2-oxoglutarate + ammonia + NADPH + 2 H+→L-glutamate + NADP+ + H2O
(EC 1.4.1.13; 1.4.1.14)
Pf6N2E2_1327
Pf6N2E2_1828
Pf6N2E2_2224
Pf6N2E2_2471
Pf6N2E2_2604
Pf6N2E2_2840
Pf6N2E2_2847
Pf6N2E2_2929
Pf6N2E2_3151
Pf6N2E2_3751
Pf6N2E2_3752
Pf6N2E2_4916
Pf6N2E2_497
Pf6N2E2_5756

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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