Grimontia hollisae: AL542_05135
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Entry
AL542_05135 CDS
T04260
Name
(GenBank) aspartate-semialdehyde dehydrogenase
KO
K00133
aspartate-semialdehyde dehydrogenase [EC:
1.2.1.11
]
Organism
gho
Grimontia hollisae
Pathway
gho00260
Glycine, serine and threonine metabolism
gho00261
Monobactam biosynthesis
gho00270
Cysteine and methionine metabolism
gho00300
Lysine biosynthesis
gho01100
Metabolic pathways
gho01110
Biosynthesis of secondary metabolites
gho01120
Microbial metabolism in diverse environments
gho01210
2-Oxocarboxylic acid metabolism
gho01230
Biosynthesis of amino acids
Module
gho_M00016
Lysine biosynthesis, succinyl-DAP pathway, aspartate => lysine
gho_M00017
Methionine biosynthesis, aspartate => homoserine => methionine
gho_M00018
Threonine biosynthesis, aspartate => homoserine => threonine
gho_M00033
Ectoine biosynthesis, aspartate => ectoine
Brite
KEGG Orthology (KO) [BR:
gho00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
AL542_05135
00270 Cysteine and methionine metabolism
AL542_05135
00300 Lysine biosynthesis
AL542_05135
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
AL542_05135
Enzymes [BR:
gho01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.1 With NAD+ or NADP+ as acceptor
1.2.1.11 aspartate-semialdehyde dehydrogenase
AL542_05135
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Motif
Pfam:
Semialdhyde_dhC
Semialdhyde_dh
NmrA
DXP_reductoisom
Epimerase
DapB_N
Motif
Other DBs
NCBI-ProteinID:
AMG29839
UniProt:
A0A377HKU6
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All DBs
Position
1:complement(354489..355514)
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AA seq
341 aa
AA seq
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MTQEFDVAYDVAVLGATGAVGRTIIEVLEERKFPVRNLHLLASERSAGETIRFNGKSVRV
KDVEDFDWSQVQIALFSAGAELSDRWAPIAADEGVIVIDNTSRFRYDYDVPLVVPEVNPE
AIADFRNRNIIANPNCSTIQMLVALKPIYDAVGIERINVCTYQSVSGSGKKGIDELAGQT
VKLLNSQEAEPNTYKKQIAFNCLPHIDEFMDNGYTKEEMKMVWETQKILGDDSVAVNPTC
VRVPVFYGHAEAVHIECQQPLDATEAMDLLSRAEGVEVYYGEDYPTQVKEATGKDHVMVG
RVRNDISHPNGLNMWVVADNVRKGAATNSVQIAELLIRDYL
NT seq
1026 nt
NT seq
+upstream
nt +downstream
nt
atgacacaagaattcgatgtggcttatgacgtcgctgttttaggtgccacaggcgcggtc
gggcgcactattatcgaggtgttggaagagcgtaaattccctgtgcgcaaccttcacttg
ctggcgagtgagcgcagtgccggtgaaaccattcgatttaacggaaagagtgtccgcgtt
aaagacgtggaagactttgactggagccaggtgcaaatcgccctgttttccgccggtgca
gaattgtcagaccgctgggcacccattgctgcagatgaaggcgtgattgtgattgataac
acctcacgcttccgctacgactatgatgtgccgctggtggtgccggaagttaacccggaa
gcgattgccgattttcgtaaccgtaacatcattgccaacccgaactgttcgaccatccag
atgctggtggcgctgaaacctatctatgacgctgtgggtattgagcgtatcaacgtgtgt
acctaccagtcagtttccggctcaggtaaaaaaggtattgatgaactggcaggccagacg
gtgaaactgctgaacagccaggaagcggagcctaacacctacaaaaagcagatcgcattc
aactgtctgccgcacatcgatgagtttatggataacggctacaccaaagaagagatgaaa
atggtgtgggaaacccagaaaatcctgggtgatgactcagtggcggtcaacccaacctgt
gtgcgcgtaccggtgttttatggccatgcagaagcggttcatattgagtgccagcaacca
ctggacgcgacagaggcgatggatctgctgtcccgagcggaaggggtcgaagtctactac
ggtgaagactacccaacccaggtcaaagaggcgactggcaaagatcatgtgatggtgggt
cgggtgcgcaatgatatcagccatccaaatggcctcaacatgtgggtggtcgcggacaac
gtgcgcaaaggggcggcaaccaactcagtacaaatagcggaactgcttatccgcgattac
ctgtaa
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