Burkholderia diffusa: WI26_09740
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Entry
WI26_09740 CDS
T04698
Name
(GenBank) malate synthase
KO
K01638
malate synthase [EC:
2.3.3.9
]
Organism
bdf
Burkholderia diffusa
Pathway
bdf00620
Pyruvate metabolism
bdf00630
Glyoxylate and dicarboxylate metabolism
bdf01100
Metabolic pathways
bdf01110
Biosynthesis of secondary metabolites
bdf01120
Microbial metabolism in diverse environments
bdf01200
Carbon metabolism
Module
bdf_M00012
Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:
bdf00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
WI26_09740
00630 Glyoxylate and dicarboxylate metabolism
WI26_09740
Enzymes [BR:
bdf01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.9 malate synthase
WI26_09740
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Gene cluster
GFIT
Motif
Pfam:
MS_TIM-barrel
MS_C
MS_N
Motif
Other DBs
NCBI-ProteinID:
AOI59012
UniProt:
A0A1B4BWG0
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All DBs
Position
1:2118179..2119771
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AA seq
530 aa
AA seq
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MSTPITLPQGMAITGEIKPGYEAILTPEALALVAALHRAFEPRRQALLQARVERTKRLDV
GERPDFLADTKAIREGDWKVAPLPADLQCRRVEITGPVERKMIINALNSGADSYMTDFED
SNAPSWTNQIDGQINLKDAVRRTISLEQNGKSYRLNDKVATLIVRPRGWHLDEKHVTVDG
QRVSGGIFDFALFLFHNAKELIARGSGPYFYLPKMESHLEARLWNDIFVAAQEAVGVPRG
TIRATVLIETILAAFEMDEILYELREHSSGLNAGRWDYIFSAIKKFKNDRDFCLADRSKI
TMTVPFMRAYALLLLKTCHKRNAPAIGGMSALIPIKNDPEANEKAMGGVRSDKQRDATDG
YDGGWVAHPGLVPIAMEEFVKVLGDKPNQIAKQRDDVQIEGRNLLDFQPEAPITEAGLRN
NINVGIHYLGAWLDGNGCVPIHNLMEDAATAEISRSQVWQWIRSPKGVLDDGRKVTAELV
REFAKAELENVKRSVGGNTQPYERAAAIFEQMSTSEGFTEFLTLPLYEEI
NT seq
1593 nt
NT seq
+upstream
nt +downstream
nt
atgagcaccccgatcacgctgccgcagggcatggcgatcaccggcgaaatcaagccgggt
tacgaagcgatcctgacacctgaagcgctcgcgctcgtcgcggcgctgcaccgcgcgttc
gagccgcgccgccaggcgctgctgcaggcccgcgtcgagcgcaccaagcgcctcgacgtc
ggcgaacgccccgatttcctggccgatacgaaggcgatccgcgaaggcgactggaaggtc
gcgccgctgccggccgacctgcaatgccgccgtgtcgagatcaccggccccgtcgagcgc
aagatgatcatcaacgcgctgaactcgggcgccgattcgtacatgacggacttcgaggac
tcgaacgcgccgagctggacgaaccagatcgacggccagatcaacctcaaggacgccgtg
cgccgcacgatctcgctcgagcagaacggcaagtcgtaccggctgaacgacaaggtcgcg
acgctgatcgtgcgtccgcgcggctggcacctcgacgagaagcacgtgacggtcgacggc
cagcgcgtgtccggcggcatcttcgatttcgcgctgttcctgttccacaacgcgaaggaa
ctgatcgcacgcggctccggcccgtacttctacctgccgaagatggaaagccatctcgag
gcgcgcctgtggaacgacatcttcgtcgctgcacaggaggcagtcggcgtgccgcgcggc
acgatccgcgcgacggtgctgatcgagacgatcctcgcggcgttcgagatggacgagatc
ctgtacgaactgcgcgagcacagctccggcctgaacgccggccgctgggactacatcttc
tcggcgatcaagaagttcaagaacgaccgcgacttctgcctggccgaccgctcgaagatc
acgatgacggtgccgttcatgcgggcgtacgcgctgctgctgctgaagacctgtcacaag
cgcaatgcgccggcgatcggcgggatgagcgcactgattccgatcaagaacgatccggaa
gcgaacgagaaggcgatgggcggcgtgcgttcggacaagcagcgcgatgcgaccgacgga
tacgacggcggctgggttgcgcacccgggcctcgtgccgatcgcgatggaagaattcgtc
aaggtgctcggcgacaagccgaaccagatcgcgaagcagcgcgacgacgtccagatcgaa
ggccggaatctgctcgacttccagcccgaagcgccgatcaccgaagccggcctgcgcaac
aacatcaacgtgggcatccattatctcggcgcctggctcgacggcaacggctgcgtgccg
atccacaacctgatggaagacgcggcgaccgccgagatctcccgctcgcaggtgtggcag
tggatccgctcgccgaagggcgtgctcgacgacggccgcaaggtcaccgccgagcttgtt
cgcgagttcgcgaaggcggagctcgagaacgtgaagcgctcggtcggtggcaacacgcag
ccgtacgagcgcgccgcggcgatcttcgaacagatgtcgacgtcggaaggcttcaccgaa
ttcctgacgctgccgctgtacgaggaaatctga
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