Adlercreutzia hattorii: ADCFC_22620
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Entry
ADCFC_22620 CDS
T07732
Name
(GenBank) aminotransferase
KO
K05825
2-aminoadipate transaminase [EC:2.6.1.-]
Organism
ahat
Adlercreutzia hattorii
Pathway
ahat00300
Lysine biosynthesis
ahat00630
Glyoxylate and dicarboxylate metabolism
ahat01100
Metabolic pathways
ahat01110
Biosynthesis of secondary metabolites
ahat01210
2-Oxocarboxylic acid metabolism
Brite
KEGG Orthology (KO) [BR:
ahat00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
ADCFC_22620
09105 Amino acid metabolism
00300 Lysine biosynthesis
ADCFC_22620
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Motif
Pfam:
Aminotran_1_2
Asp_aminotransf
Motif
Other DBs
NCBI-ProteinID:
BCA89643
UniProt:
A0A6F8SNP0
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Position
complement(2687873..2689318)
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AA seq
481 aa
AA seq
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MNKMSSAHITFDTTGDKIARRVRKMRPSAVRNLFAAATRDDVISLSGGMPAVSLLPEEDI
RRATLAAIESPEARAVSLQYGPTDGLAGLRAVLADMMRDLGIRVKADQVLVTTGAQQALT
LIAEAFIDPDDIIITEGPTYLGALQAFSAFEPDVRAIPFDEDGMRMDLLEEELKRIGKDN
PRLKFCYTIPNFQNPGGVTMTAERRRRLLELAHEYNFMVVEDDPYGRLRYDGGHQVPLKA
MDDSVIYLGTISKMLGPGLRTGWIAAPEAVLARINLVKQGADLCGSAFDQLVVQHYFADV
AWQRTLQKFIALYKERRDAMLAALDEFFPPEATWTHPAGGMFLWITLPDYMDTDSMLAEA
LESGVTYVPGNSFFPDGKTGRNSMRVNFSFETPESITEAIRRLAKVIEERLELYRVFIEA
GALPGYDRKDAAMDENATSWKDVIVDSEQNEEAVMQAREGDAEQIEIAEEKVTEAQEAAA
E
NT seq
1446 nt
NT seq
+upstream
nt +downstream
nt
ttgaataagatgtcgtcagctcacatcaccttcgacaccaccggcgacaagatcgcccga
cgcgtgcgcaagatgcgcccgtcggccgtgcgcaacctgttcgccgccgctacgcgcgac
gatgtaatctcgctgtcgggcggcatgcccgctgtgtcgcttctgcccgaggaggacatt
cgccgcgccacgctggccgccattgagagccccgaggcccgcgcagtatcgctgcagtac
ggccccaccgacgggctcgccgggctgcgcgcggtgctcgccgacatgatgcgcgatctg
ggcatccgcgtgaaggccgaccaggtgctcgtcaccacgggcgcccagcaggccctaacg
ctcatcgccgaggctttcatcgaccccgacgacatcatcattaccgagggccccacctat
ctgggggcgctgcaggccttctccgccttcgagcccgatgtgcgcgcgatccccttcgac
gaggacggcatgcgcatggatctcctggaagaggaactcaagcgcatcggcaaggacaac
ccgcgcctgaagttctgctacaccatcccgaatttccagaaccccggcggcgtcaccatg
acggccgagcgccggcgccgcctgctcgagctggcccatgagtacaacttcatggtggtg
gaagacgatccttacggccgtctccgctacgacggcggccaccaggtgcccctgaaggcc
atggacgattcggtcatttacctgggcacgatttcgaagatgctggggccggggctgcgc
acgggctggattgccgcgcctgaggccgtgctcgcccgcatcaacctggtgaagcagggt
gccgatttgtgcggcagcgccttcgaccagctggtcgtgcagcactactttgccgatgtc
gcctggcagcgcacgctgcagaagttcatcgcgctgtacaaggagcgccgcgacgccatg
ctggcggccctcgacgagttcttcccgcccgaggccacctggacgcatccggccggcggc
atgtttctctggattacgctgccggactatatggataccgattcgatgcttgccgaagcg
ctggagtcgggcgtaacctatgtgccggggaattcgttcttccccgatggcaaaaccggg
cgcaactccatgcgcgtgaacttcagcttcgagacgcccgaatccatcaccgaggccatc
cgacgcctggcgaaggtgatcgaggagcgcctcgaactctaccgcgtgttcattgaggcc
ggcgcgctgcccggctacgacagaaaggatgcagccatggacgagaatgccacttcttgg
aaggacgtcatcgtcgattccgagcagaacgaggaagcggtcatgcaggcccgcgaaggc
gatgccgagcagatcgagatcgccgaggagaaggtgaccgaggcgcaggaagccgcggca
gaataa
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