Vibrio tubiashii: IX91_12555
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Entry
IX91_12555 CDS
T03445
Name
(GenBank) glutamate synthase
KO
K00266
glutamate synthase (NADPH) small chain [EC:
1.4.1.13
]
Organism
vtu
Vibrio tubiashii
Pathway
vtu00250
Alanine, aspartate and glutamate metabolism
vtu00910
Nitrogen metabolism
vtu01100
Metabolic pathways
vtu01110
Biosynthesis of secondary metabolites
vtu01120
Microbial metabolism in diverse environments
vtu01230
Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:
vtu00001
]
09100 Metabolism
09102 Energy metabolism
00910 Nitrogen metabolism
IX91_12555
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
IX91_12555
Enzymes [BR:
vtu01000
]
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)
IX91_12555
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Motif
Pfam:
Fer4_20
Pyr_redox_2
Pyr_redox_3
Pyr_redox
NAD_binding_8
FAD_oxidored
FMO-like
FAD_binding_3
NAD_binding_7
Thi4
AlaDh_PNT_C
MurD-like_N
Shikimate_DH
DAO
2-Hacid_dh_C
FAD_binding_2
HI0933_like
Glu_dehyd_C
Amino_oxidase
NAD_binding_9
IlvN
GIDA
Fer4_7
ThiF
NAD_Gly3P_dh_N
Motif
Other DBs
NCBI-ProteinID:
AIW15000
UniProt:
F9T659
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Position
1:2705088..2706500
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AA seq
470 aa
AA seq
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MSQNVYQFIDVQRVDPAKKPIKTRKIEFVEIYEPFTKQQATAQADRCLDCGNPYCEWKCP
VHNYIPQWLKLANEGRILEAVELSHQTNSLPEVCGRVCPQDRLCEGSCTLSDDFGAVTIG
NIEKYITDKAFEMGWKPDMSKVEWTDKKVAIIGAGPAGLAAADILVRNGVKPVVFDRYPE
IGGLLTFGIPSFKLEKGVMENRRRVFSEMGVEFKLNIEVGKDIQMQELVDEYDAVFLGVG
TYKNMRAGLDNEDAPGVYDALPFLVSNTYKVMNLEDDQPFIDMAGQKVVVLGGGDTAMDC
VRTSIRQGADNVICAYRRDEANMPGSRREVKNAKEEGVNFMFNLQPLGLEIDTSGKVSGV
KVVKTALGEPDEAGRRRPEPVEGSEHVLEADAVIMAFGFQPHQMSWLEPYGVELDQWGRI
KAPSDQEFMFQTSNKKIFAGGDAVRGSDLVVTAIDEGRKAAEGILDYLEV
NT seq
1413 nt
NT seq
+upstream
nt +downstream
nt
atgagtcagaacgtataccaattcatcgacgtacaacgcgtagatcctgcaaaaaagcca
attaaaactcgtaagattgagttcgtcgaaatttatgaaccctttactaagcagcaagcc
acagcgcaagcggatcgctgcttagattgtggtaacccttactgtgaatggaaatgtcct
gttcacaactatatccctcaatggctaaagcttgccaatgaaggacgcatcttagaagcc
gttgagctttctcaccaaactaacagcttgcctgaagtgtgcggtcgagtatgtcctcaa
gataggctgtgtgaaggttcttgtaccttaagcgacgactttggtgccgtgacaattggt
aatattgaaaagtacattaccgataaagcgtttgagatgggctggaaaccagacatgtct
aaagtagagtggacagataagaaggttgccattatcggtgcagggccagcgggccttgct
gcggcagacatcttagttcgtaacggcgtcaagccagttgttttcgaccgctaccctgaa
atcggtggtctactcactttcggtattccgtcgtttaagttggaaaaaggggtgatggaa
aatcgccgtcgagtctttagcgaaatgggcgtcgagttcaagctcaacattgaggtgggg
aaagacatccaaatgcaggagcttgtcgatgagtatgatgcggtcttccttggcgtaggc
acctacaagaatatgcgtgcgggtctagacaacgaggatgctccaggtgtgtatgatgct
ctacctttcttagtatcaaatacctataaggtaatgaacttggaagatgaccagccattt
attgatatggcagggcaaaaagtggtcgtccttggtggtggtgataccgcaatggactgt
gtacgtacatcgattcgtcaaggtgctgataacgtcatttgtgcttaccgccgtgatgaa
gccaacatgccgggctctcgtcgtgaggtaaaaaatgccaaagaagaaggggtaaacttt
atgtttaaccttcagccactaggacttgaaatcgacacttcaggcaaagtcagcggtgtc
aaagtggtcaaaacggcattgggtgaaccagatgaagcggggcgccgtcgccctgaacct
gtagaaggcagtgaacatgtattggaagccgatgccgttatcatggcgtttggtttccaa
ccccaccagatgagttggcttgaaccatatggcgtagaactcgatcaatggggacgtatc
aaagcaccatctgatcaagagtttatgttccagacgagcaacaagaaaatctttgccgga
ggagatgccgttcgagggtctgatcttgttgtcactgcgattgatgaaggacgtaaagct
gctgaaggcatacttgattaccttgaggtatag
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