Burkholderia sp. MS389: GJG85_10805
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Entry
GJG85_10805 CDS
T10544
Name
(GenBank) malate synthase A
KO
K01638
malate synthase [EC:
2.3.3.9
]
Organism
burm Burkholderia sp. MS389
Pathway
burm00620
Pyruvate metabolism
burm00630
Glyoxylate and dicarboxylate metabolism
burm01100
Metabolic pathways
burm01110
Biosynthesis of secondary metabolites
burm01120
Microbial metabolism in diverse environments
burm01200
Carbon metabolism
Module
burm_M00012
Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:
burm00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
GJG85_10805
00630 Glyoxylate and dicarboxylate metabolism
GJG85_10805
Enzymes [BR:
burm01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.9 malate synthase
GJG85_10805
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GFIT
Motif
Pfam:
MS_TIM-barrel
MS_C
MS_N
HpcH_HpaI
Motif
Other DBs
NCBI-ProteinID:
QRR13875
UniProt:
A0AAQ0CRG9
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All DBs
Position
1:2329329..2330921
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AA seq
530 aa
AA seq
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MSTPITLPQGMTITGEIKPGYEAILTPDALALVASLHRTFESRRQTLLQARVERTKRLDA
GERPDFLAETQAIREGDWKVAPLPADLQCRRVEITGPVERKMIINALNSGADSYMTDFED
SNAPSWTNQIDGQINLKDAVRRTISLEQNGKSYRLNDKVATLIVRPRGWHLDEKHVTVDG
QRVSGGIFDFALFLFHNTKELIARGSGPYFYLPKMESHLEARLWNDIFVAAQEAIGVPRG
TIRATVLIETILAAFEMDEILYELREHSSGLNAGRWDYIFSAIKKFKNDRDFCLAERSKI
TMTVPFMRAYALLLLKTCHKRNAPAIGGMSALIPIKNDPEANDKAMGGVRSDKQRDATDG
YDGGWVAHPGLVPIAMEEFVKVLGDQPNQIAKQRDDVQVEGRNLLDFQPEAPITEAGLRN
NINVGIHYLGAWLDGNGCVPIHNLMEDAATAEISRSQVWQWIRSPKGVLDDGRKVTADLV
REFAKLELDNVKRSVGGNTQPYERAAAIFEQMSTSEGFTEFLTLPLYEEI
NT seq
1593 nt
NT seq
+upstream
nt +downstream
nt
atgagcaccccgatcacgctgccgcaaggcatgacgatcaccggcgaaatcaagccgggt
tacgaagcgatcctgacgcccgacgcgctggcactcgtcgcgtcgctgcatcgcacgttc
gaatcgcgccgccagacgctgctgcaggcgcgcgtcgagcgcacgaaacgcctcgacgcg
ggcgagcgccccgatttcctcgccgagacgcaggcgatccgcgaaggcgactggaaggtc
gcgccgctgccggccgacctgcaatgccgccgcgtcgaaatcacgggcccggtcgagcgc
aagatgatcatcaacgcgctgaactcgggcgccgattcgtacatgacggacttcgaggat
tcgaacgcgccgagctggacgaaccagatcgacggccagatcaacctgaaggacgcggtg
cgccgcacgatctcgctcgagcagaacggcaagtcgtaccggctgaacgacaaggtcgcg
acgctgatcgtgcgtccgcgcggctggcacctcgacgagaagcacgtgacggtcgacggc
cagcgcgtgtccggcggcatcttcgatttcgcgctgttcctgttccacaacacgaaggaa
ctgatcgcgcgcggctcgggcccgtacttctacctgccgaagatggaaagccatctcgag
gcgcgcctgtggaacgacatcttcgtcgcggcccaggaagcgatcggcgtgccgcgcggc
acgatccgcgcgacggtgctgatcgagacgatcctcgccgcgttcgagatggacgagatc
ctgtacgaactgcgcgaacacagctcgggcctgaacgccggccgctgggactacatcttc
tcggcgatcaagaagttcaagaacgaccgcgacttctgcctggccgagcgttcgaagatc
acgatgacagtgccgttcatgcgcgcgtacgcgttgctgctgctgaagacctgccacaag
cgcaacgcgccggcgatcggcgggatgagcgcgctgatcccgatcaagaacgatccggaa
gcgaacgacaaggcgatgggcggggtgcgctcggacaagcagcgcgacgcgaccgacggc
tacgacggcggctgggtcgcgcatccgggcctcgtgccgatcgcgatggaagaattcgtc
aaggtgctcggcgaccagccgaaccagatcgcaaagcagcgcgacgacgtgcaggtcgaa
ggcaggaacctgctcgacttccagccggaagcgccgatcaccgaagccgggctgcgcaac
aatatcaacgtcgggatccactacctcggcgcatggctcgacggcaacggctgcgtgccg
atccacaacctgatggaagacgcggcgacggccgagatctcgcgctcgcaggtgtggcaa
tggatccgctcgccgaagggcgtgctcgacgacggccgcaaggtcacggccgacctcgtg
cgcgaattcgcgaagctcgagctcgacaacgtgaagcgctcggtcggcggcaacacgcag
ccgtacgaacgcgccgcggcgatcttcgagcagatgtccacgtcggaaggcttcaccgaa
ttcctgacgctgccgctgtacgaggaaatttga
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