Vibrio fluvialis: AL536_11955
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Entry
AL536_11955 CDS
T04379
Name
(GenBank) adenylosuccinate lyase
KO
K01756
adenylosuccinate lyase [EC:
4.3.2.2
]
Organism
vfl
Vibrio fluvialis
Pathway
vfl00230
Purine metabolism
vfl00250
Alanine, aspartate and glutamate metabolism
vfl01100
Metabolic pathways
vfl01110
Biosynthesis of secondary metabolites
vfl01232
Nucleotide metabolism
vfl01240
Biosynthesis of cofactors
Module
vfl_M00048
De novo purine biosynthesis, PRPP + glutamine => IMP
vfl_M00049
Adenine ribonucleotide biosynthesis, IMP => ADP,ATP
Brite
KEGG Orthology (KO) [BR:
vfl00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
AL536_11955
09105 Amino acid metabolism
00250 Alanine, aspartate and glutamate metabolism
AL536_11955
Enzymes [BR:
vfl01000
]
4. Lyases
4.3 Carbon-nitrogen lyases
4.3.2 Amidine-lyases
4.3.2.2 adenylosuccinate lyase
AL536_11955
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Gene cluster
GFIT
Motif
Pfam:
Lyase_1
ASL_C
Motif
Other DBs
NCBI-ProteinID:
AMF94200
UniProt:
A0AAX2LLZ7
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Position
2:complement(909577..910947)
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AA seq
456 aa
AA seq
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MELSALTAVSPVDGRYGSKTIALRSIFSEFGLLKYRSIVEIRWLQKLAATDAIKEVPAFS
AEANQFLDDIAANFSEEDALRIKEIERTTNHDVKAVEYFLKEKVAGMPELHAVNEFIHFA
CTSEDINNTSHALMLKEARETVILPEIRNLIDAIKALAVEYRDIPLLSRTHGQPASPSTM
GKEMANVAYRMERQYKQIENVEILAKINGAVGNYNAHLSAYPTVDWHKFSEEFVTESLGV
TWNPYTTQIEPHDYIAELFDAVARFNTILIDFDRDVWGYIALGHFKQKTIAGEIGSSTMP
HKVNPIDFENSEGNLGLANAVFGHLAQKLPISRWQRDLTDSTVLRNLGVGVGYAIIAYTS
TLKGISKLEVNRDALLAELDKNWEVLAEPVQTVMRRYGIEKPYEKLKELTRGKRVDGEAM
RNFIDGLELPEDEKVRLKEMTPASYIGYAIELTDQL
NT seq
1371 nt
NT seq
+upstream
nt +downstream
nt
atggaactgtcagcattgactgctgtttcaccagtagacggccgttacggaagtaagaca
attgcactacgcagcatctttagcgagtttggcctactaaagtaccgctctatcgttgaa
atccgttggctgcaaaaattagctgccaccgacgcgatcaaggaagtaccagcattcagt
gcagaagcaaaccagttcctggacgatatcgccgccaacttcagtgaagaagacgcgctg
cgcatcaaagaaatcgaacgtaccactaaccacgacgtaaaagcggttgagtacttcctg
aaagagaaagttgctggcatgccagaactgcacgcggtaaacgaattcattcactttgct
tgtacatctgaagacatcaacaacacctctcacgctctgatgctgaaagaagcgcgtgaa
acggtgattctgccagaaatccgcaacctgattgatgcgatcaaagcactggcagtggaa
taccgcgatattccactgctgtctcgtacacacggtcaacctgcgtcgccatcaaccatg
ggtaaagaaatggcaaacgttgcctaccgcatggaacgtcaatacaagcaaatcgaaaac
gttgagatcctggcgaaaatcaacggcgccgtaggtaactacaacgcacacctgtctgcc
tacccaacggttgattggcataaattcagcgaagagtttgtcactgaatctctgggcgta
acttggaacccatacaccactcagatcgaacctcacgattacatcgcagagctgtttgat
gccgtggcgcgtttcaacaccattctgatcgacttcgaccgtgacgtttggggctacatc
gcactgggccacttcaagcaaaaaaccattgcaggcgaaatcggttcttcaaccatgccg
cacaaagttaacccgattgacttcgaaaactctgaaggcaaccttggtctggcgaacgca
gtctttggccacctggcgcagaaactccctatctctcgctggcagcgtgacctgacggat
tcaaccgtactccgtaacctgggtgtgggtgtgggctacgcgatcatcgcttacacttca
acgctcaaaggcatcagcaagctggaagtgaaccgtgacgctctgctggctgaactggac
aaaaactgggaagttctggctgagccagtacaaactgtgatgcgtcgttacggcattgaa
aagccttatgagaagctaaaagagctgactcgtggtaaacgtgtcgacggcgaagcgatg
cgtaacttcatcgacggtctggaactgcctgaagacgaaaaagtacgtctgaaagagatg
acgccagcgagctacatcggttacgccattgagctgactgatcagctgtaa
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