Anatilimnocola aggregata: ETAA8_61300
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Entry
ETAA8_61300 CDS
T07027
Symbol
leuA_2
Name
(GenBank) 2-isopropylmalate synthase
KO
K01649
2-isopropylmalate synthase [EC:
2.3.3.13
]
Organism
aagg
Anatilimnocola aggregata
Pathway
aagg00290
Valine, leucine and isoleucine biosynthesis
aagg00620
Pyruvate metabolism
aagg01100
Metabolic pathways
aagg01110
Biosynthesis of secondary metabolites
aagg01210
2-Oxocarboxylic acid metabolism
aagg01230
Biosynthesis of amino acids
Module
aagg_M00432
Leucine biosynthesis, 2-oxoisovalerate => 2-oxoisocaproate
Brite
KEGG Orthology (KO) [BR:
aagg00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
ETAA8_61300 (leuA_2)
09105 Amino acid metabolism
00290 Valine, leucine and isoleucine biosynthesis
ETAA8_61300 (leuA_2)
Enzymes [BR:
aagg01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.13 2-isopropylmalate synthase
ETAA8_61300 (leuA_2)
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Gene cluster
GFIT
Motif
Pfam:
HMGL-like
LeuA_dimer
Motif
Other DBs
NCBI-ProteinID:
QDU30977
UniProt:
A0A517YL67
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Position
complement(7711585..7713156)
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AA seq
523 aa
AA seq
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MRTIQIYDTTLRDGTQGEGVSLSLEDKLLITRRLDEFGIDFIEGGYPLSNPKDAEYFHRV
RDLKLNHAKVCAFGMTRRKGIAAKDDPGMQALVNSQAPVCTVVGKTSDFHVTEILRVSLQ
ENLDMIRDSLSFLKSQGREVFYDAEHFFDGFAANPQYALSTIRTAAEAGASVIILCDTNG
GTMPDAIAERARQALEVLAPLGAKVGIHCHNDCELAVANSLAAVDAGASQVQGTMNGFGE
RCGNADLITVIANLCLKKKYAALRQDSLEHLTELSRFVYEVANQHHRNNQPFVGQSAFAH
KGGMHVHAIARATSSYEHIDPALVGNERRILVSELSGRSNIAALTAKHKLDDNRGLMDAI
LQRVCDLEAVGYQFEAAEASFDLLVRKVAGTFQPHFERLKYHVAVSAEGMSGEPVTEATV
KVRVGETNLHEVAEGDGPVNALDAALRKALNGTFAGLQEMRLIDYKVRVVNGEAGTAAKI
RVIIESTDGHDVWGTIGVSENIIEASWLALVDAIEYKLFKDEM
NT seq
1572 nt
NT seq
+upstream
nt +downstream
nt
atgcgaaccatccagatctacgatacgaccttgcgcgacggcacgcagggagaaggggtt
agcctgtctctggaggacaagctgctgattactcgccggctggatgaattcggcatcgac
ttcatcgaagggggctaccccctgtcgaacccgaaggacgcagagtactttcaccgcgtc
cgcgacttgaagcttaaccatgccaaggtctgtgccttcggcatgacgcggcgcaagggc
attgccgcgaaagacgatcccggcatgcaggcgcttgtgaattcgcaggcgccggtttgt
accgtcgtcggcaagacctccgattttcacgtgaccgagatcttgcgagtcagcttgcaa
gaaaatctcgacatgattcgcgattcgctgtcgtttctgaagtcgcagggtcgcgaagtt
ttttatgacgccgaacacttcttcgacggcttcgccgcgaatccgcaatatgccctctcg
accattcgcaccgccgccgaagctggcgcgagtgtgatcatcctctgcgataccaacggc
ggcaccatgccggacgcgattgccgagcgcgcgcgccaggcactcgaagtgctggcaccg
ctgggcgcaaaagtgggcatccactgccacaacgattgcgaactagctgtggctaactcg
ctggcagccgtcgatgcgggcgcttcgcaagtgcaaggaacgatgaacggctttggcgag
cgctgcggcaacgccgacttaatcacggttatcgccaacttgtgcctgaagaaaaagtac
gctgccctccgccaggattcgctcgaacatctgaccgagctctcgcggtttgtctacgaa
gtggccaatcagcatcatcggaacaaccagcccttcgtggggcagagcgcatttgcccac
aagggtggcatgcacgtccacgcaattgcccgggcgacgagttcttacgagcacatcgat
ccagcgctggtcggcaacgagcgacggattctggtcagcgaactatcggggcggtcgaac
attgccgcgctgacggccaagcataagctggacgacaaccgcgggctgatggacgcgatc
ttgcagcgggtttgcgacttggaagcggtgggctaccagttcgaagcggccgaagcgagc
ttcgacttgctcgtgcgaaaagtcgcggggacgttccagccgcatttcgaacgattgaag
tatcacgttgccgtcagtgccgaaggaatgagcggcgaaccggtgaccgaagccacggtg
aaagttcgggtgggtgagacaaacctgcacgaggtggccgaaggtgacggtccggtcaat
gcgctcgatgcggcgctccgtaaggcgctcaatggtactttcgcggggctgcaagaaatg
cggctcatcgactacaaggtgcgcgtggtcaatggtgaagcgggtaccgctgccaagatt
cgcgtcatcatcgagtcgaccgatggccacgacgtgtggggaaccatcggtgtgagcgag
aacatcatcgaggccagttggctcgcgcttgtcgacgcgatcgagtacaagctgttcaag
gacgagatgtag
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