Thermoanaerobacter mathranii: Tmath_2096
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Entry
Tmath_2096 CDS
T01250
Name
(GenBank) glutamate synthase (NADPH), homotetrameric
KO
K00266
glutamate synthase (NADPH) small chain [EC:
1.4.1.13
]
Organism
tmt
Thermoanaerobacter mathranii
Pathway
tmt00250
Alanine, aspartate and glutamate metabolism
tmt00910
Nitrogen metabolism
tmt01100
Metabolic pathways
tmt01110
Biosynthesis of secondary metabolites
tmt01120
Microbial metabolism in diverse environments
tmt01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
tmt00001
]
09100 Metabolism
09102 Energy metabolism
00910 Nitrogen metabolism
Tmath_2096
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
Tmath_2096
Enzymes [BR:
tmt01000
]
1. Oxidoreductases
1.4 Acting on the CH-NH2 group of donors
1.4.1 With NAD+ or NADP+ as acceptor
1.4.1.13 glutamate synthase (NADPH)
Tmath_2096
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GFIT
Motif
Pfam:
Fer4_20
Pyr_redox_2
Pyr_redox
Pyr_redox_3
AlaDh_PNT_C
NAD_binding_8
F420_oxidored
Thi4
DAO
FAD_oxidored
HI0933_like
NAD_binding_7
FAD_binding_2
FAD_binding_3
2-Hacid_dh_C
GIDA
Amino_oxidase
Shikimate_DH
Oxidored_nitro
Fer4_6
Lycopene_cycl
NAD_binding_9
Motif
Other DBs
NCBI-ProteinID:
ADH61770
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Position
2109754..2111154
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AA seq
466 aa
AA seq
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MPLNRSKKKTPMPTQKPDVRRRNFSEVALGYSEEEAVSEAQRCLQCKKPGCVEGCPVQVQ
IPQFIKRIAERDFEGAIKIIKETNSLPAICGRVCPQEEQCEKNCVLGKVGEPVAIGRLER
FAADWERAKGIRPSVIPKKLGKKVAIIGSGPAGLTCAGDLAKLGYDVTIFEALHKPGGVL
IYGIPEFRLPKIIVEQEVEFIQQLGVEIKTNMVMGKILTIEDLFEMGYEAVFTGTGAGLP
KFMGIPGENYLGVYSANEFLTRINLMKAYSFPNTDTPIKVGKKVAVIGGGNVAMDAARSA
LRMGAEEVHIVYRRSEEEMPARKEEVENAKEEGIIFDLLTNPVKIIGNENGWVKGIECIR
MELGEPDASGRRRPVPIMGSEFVMDIDTVVIAIGTGPNPLLTKATEGLELTKHGYIAVDE
EGRTSREGVWAGGDIVTGSATVILAMGAGKKAARSIHEYLQSKKWR
NT seq
1401 nt
NT seq
+upstream
nt +downstream
nt
atgccgttaaatagaagtaaaaagaaaacacccatgcctacccaaaagcctgacgtccgc
aggcgtaattttagcgaagtagctttgggctattcggaagaggaggcagtaagtgaagcc
cagaggtgccttcagtgtaaaaaaccaggatgtgttgaagggtgccccgttcaggtacaa
attccccagtttataaagcgtattgcagaaagagattttgaaggagctataaagattata
aaggaaaccaacagcttgcccgccatatgtggcagagtctgtccacaagaagagcaatgc
gagaaaaactgtgttttgggtaaagtaggtgaacctgtagcaataggtcgcctagaacga
tttgcagcagactgggaaagagccaaaggcatccgtccctcggtaattcccaaaaagctt
ggtaaaaaagtggctatcatcggttccgggcccgccggtctcacctgtgcaggagattta
gctaaactcggctacgatgtaacgatctttgaagctcttcacaaacccggcggcgtattg
atctacggtattcctgaattcagactaccgaaaattatagtggaacaagaagtagaattt
atacaacagctaggcgtagaaattaaaactaacatggttatgggtaaaattctgacgata
gaggacctttttgaaatggggtatgaggctgtctttaccggcactggagctggtctcccg
aaatttatgggcatacctggtgaaaactacctgggcgtgtattcagccaacgagtttcta
accaggataaacctcatgaaagcctattcttttcccaacactgacacccccataaaggta
ggtaaaaaagtagcagtaatagggggtggcaatgtagccatggatgcagccaggtctgct
ctaagaatgggagctgaagaggttcacattgtgtatcgtcgttccgaggaagaaatgcca
gcaagaaaagaagaagtcgagaacgctaaagaagaaggcattatattcgatttgcttaca
aatccagtgaaaataataggcaacgaaaatggttgggtcaaaggtattgagtgtatccgc
atggaacttggagaacctgacgcttcgggtcgtcgccgtccagttcctataatgggttct
gaatttgttatggatatcgatacggtagtaatcgccataggcactggtcctaatcccctc
ctcacaaaggccactgaaggcttagaacttacaaaacatggttatatcgctgtagatgag
gaaggacggacttccagagaaggggtatgggctggaggcgatattgtaacaggttcagct
actgtgattttggccatgggtgccggaaaaaaagcagctcgttccatccatgaatatcta
caaagcaaaaaatggcggtaa
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