Cellvibrio sp. KY-YJ-3: D0B88_14770
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Entry
D0B88_14770 CDS
T06234
Symbol
asd
Name
(GenBank) aspartate-semialdehyde dehydrogenase
KO
K00133
aspartate-semialdehyde dehydrogenase [EC:
1.2.1.11
]
Organism
cek
Cellvibrio sp. KY-YJ-3
Pathway
cek00260
Glycine, serine and threonine metabolism
cek00261
Monobactam biosynthesis
cek00270
Cysteine and methionine metabolism
cek00300
Lysine biosynthesis
cek01100
Metabolic pathways
cek01110
Biosynthesis of secondary metabolites
cek01120
Microbial metabolism in diverse environments
cek01210
2-Oxocarboxylic acid metabolism
cek01230
Biosynthesis of amino acids
Module
cek_M00016
Lysine biosynthesis, succinyl-DAP pathway, aspartate => lysine
cek_M00018
Threonine biosynthesis, aspartate => homoserine => threonine
cek_M00033
Ectoine biosynthesis, aspartate => ectoine
Brite
KEGG Orthology (KO) [BR:
cek00001
]
09100 Metabolism
09105 Amino acid metabolism
00260 Glycine, serine and threonine metabolism
D0B88_14770 (asd)
00270 Cysteine and methionine metabolism
D0B88_14770 (asd)
00300 Lysine biosynthesis
D0B88_14770 (asd)
09110 Biosynthesis of other secondary metabolites
00261 Monobactam biosynthesis
D0B88_14770 (asd)
Enzymes [BR:
cek01000
]
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
D0B88_14770 (asd)
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Motif
Pfam:
Semialdhyde_dhC
Semialdhyde_dh
Motif
Other DBs
NCBI-ProteinID:
QEY13396
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Position
complement(3470298..3471404)
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AA seq
368 aa
AA seq
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MKVGFVGWRGMVGSVLMERMQAENDFAAIEPVFFTTSNVGGAAPAVAAGLPALKDAYSVD
DLKQLDVIVTCQGGDYTNEIFPKLRSSGWDGYWIDAASSLRMEDDAVIILDPVNQGVIDS
ALKKGVKNFIGGNCTNSIMLMGVGGLFHAGLVDWVSSMTYQAASGGGANHMRELLKGMGV
IHDAVADELATPASAILDIDRKVANTIRNDVPREFFPAPLAGGLIPWIDKQLDNGQSKEE
WKGQAEVNKILGNADTIPVDGLCVRIGAMRCHSLALTIKLKKDLPLAEIESIIKSGNEWV
KFVPNDRGITEQELTPASITGGLKIGVGRVRKLNMGPEYISAFVIGDQLLWGAAEPLRRM
LRILKESK
NT seq
1107 nt
NT seq
+upstream
nt +downstream
nt
atgaaagtaggttttgtaggttggcgcggtatggtcggctctgtgttgatggagcgtatg
caagcagaaaacgactttgcagctatcgaacccgtattttttaccacttcaaatgtaggt
ggcgctgcgccagctgttgcggctggattgcctgcattgaaagatgcttattcagttgat
gatctgaagcaattggatgtgattgttacctgtcagggtggtgactacaccaatgagatt
tttccgaaactgcgctcgtccggctgggatggctattggatcgacgcggcctccagtctg
cgtatggaagatgatgcggtcattattcttgatccggttaatcagggtgttatcgactcg
gcgctgaagaaaggcgttaaaaactttattggtggcaactgcactaactccatcatgctg
atgggtgtgggtggtttgtttcatgcgggtttggtggattgggttagctccatgacctat
caggctgcctcgggtggcggtgccaatcacatgcgcgaattgttgaaaggtatgggcgtg
attcatgatgctgtggctgatgagttggcaacacctgcttcagcgattttggatatcgac
agaaaagtggctaacactatccgtaacgacgtgccgcgcgaattttttccagctccgctt
gctggcggtttgatcccttggatcgacaagcaattggataatggccagtccaaagaagag
tggaaaggtcaggctgaagttaacaaaattttggggaatgccgacaccatcccggttgat
ggtttgtgtgtgcgcattggtgccatgcggtgccatagtttggcgttgactatcaagctc
aaaaaagatcttccacttgcagagatcgaatccatcatcaagtcaggcaatgagtgggtt
aaatttgtaccaaacgaccgtggcatcactgagcaggaattgaccccagcctccatcacc
ggtggcctcaaaattggtgtaggtcgagtgcgtaagctcaatatggggccggaatatatt
tctgctttcgtgattggcgatcagttgttgtggggggcggctgagccgttgcgccgtatg
ctgcgcatactcaaagagtccaaatag
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