Massilia oculi: DIR46_01395
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Entry
DIR46_01395 CDS
T05448
Name
(GenBank) malate synthase A
KO
K01638
malate synthase [EC:
2.3.3.9
]
Organism
mtim
Massilia oculi
Pathway
mtim00620
Pyruvate metabolism
mtim00630
Glyoxylate and dicarboxylate metabolism
mtim01100
Metabolic pathways
mtim01110
Biosynthesis of secondary metabolites
mtim01120
Microbial metabolism in diverse environments
mtim01200
Carbon metabolism
Module
mtim_M00012
Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:
mtim00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
DIR46_01395
00630 Glyoxylate and dicarboxylate metabolism
DIR46_01395
Enzymes [BR:
mtim01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.9 malate synthase
DIR46_01395
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GFIT
Motif
Pfam:
MS_TIM-barrel
MS_C
MS_N
Motif
Other DBs
NCBI-ProteinID:
AWL03237
UniProt:
A0A2S2DD20
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All DBs
Position
complement(318106..319695)
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AA seq
529 aa
AA seq
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MSLTIPAGMQITGEIKPGYENILVPEALALVAQLARAFAPRRQELLAARAERARRLDAGE
RPDFLPQTAHIRDGDWRIAPIPPALACRRVEITGPVERKMVINALNSGADSYMTDFEDSN
TPNWDNQIQGQVNLFDAVRKTISLEQNGKSYQLGDKVATLIVRPRGWHLDEKHVLVDGQR
VSGGIVDFALFMFHNAKELLVRGAGPYFYLPKLESHLEARLWNDVFVMTQDALGLPQGTI
KATVLIETILAAFEMDEILYELREHSAGLNAGRWDYIFSCIKKFKLDRDFCLADRAKVTM
TAPFMRAYALLLLKTCHRRGAPAIGGMSALIPIKNDPEKNEIAMGGVRTDKARDATDGYD
GGWVAHPGLVGLAMEEFTKVLGDKPNQFEKQRPDVEVTAAQLLDFQPETPITEAGLRYNI
NVGIHYLGAWLAGNGCVPIHNLMEDAATAEISRSQVWQWIRSPKGVLEDGRKVTADMVRE
MIPEELEKVKVVAADGTHASYERAAVIFEEMSTSDDFAEFLTLPLYEEI
NT seq
1590 nt
NT seq
+upstream
nt +downstream
nt
atgtccctcaccatccctgccggcatgcagatcacgggcgagatcaagcccggctacgag
aacatcctggtcccggaggcgctcgcgctcgtggcgcaactggcgcgtgccttcgccccg
cggcgccaggaattgctggccgcgcgcgcagagcgggcgcggcgcctggacgccggcgaa
cgcccggacttcctgccccagaccgcccacatccgcgacggcgactggcggatcgcgccg
atcccgccggcgctggcctgccggcgcgtggaaatcaccggtccggtcgagcgcaagatg
gtcatcaacgcgctcaattcgggcgccgacagctatatgaccgacttcgaggattcgaat
acgccgaactgggacaaccagatccagggccaggtcaatctgttcgatgcggtccgcaaa
accatttcgctggagcagaacggcaagtcctaccagttgggtgacaaggtggcgaccctg
atcgtgcgcccgcgcggctggcacctggacgaaaaacacgtgctggtcgacggccagcgc
gtctcgggcggcatcgtcgatttcgcgctgttcatgttccataacgccaaggaattgctg
gtgcgcggcgccggcccctatttctacctgccgaagctggaatcgcatctggaagcgcgc
ctgtggaacgacgtgttcgtgatgacccaggacgcgctgggcctgccgcagggcacgatc
aaggccacggtgctgatcgagaccattctcgccgccttcgagatggacgagatcctgtac
gagctgcgcgagcacagcgctggcctgaacgccggccgctgggactacatcttctcgtgc
atcaagaagttcaagctcgaccgcgacttctgcctggccgaccgcgccaaggtgacgatg
acggcgccgttcatgcgcgcctatgcattgctgctgctcaagacctgtcaccggcgcggc
gcgccggccattggcggcatgtcggccctcattccgatcaagaacgatccagagaaaaac
gagatcgcgatgggcggcgtgcgcaccgacaaggcgcgcgatgccacggacggctatgac
ggcggctgggtcgcgcaccccggcctggtcgggctggcgatggaagagttcaccaaggtg
ctgggcgacaagccgaaccagttcgagaagcagcgccccgacgtcgaggtgacggccgcg
caattgcttgacttccagcccgagacgccgatcaccgaggccggcctgcgctacaacatc
aatgtcggcattcactacctcggcgcctggctggccgggaatggctgcgtgccgatccat
aacctgatggaagacgcggcgacagccgagatcagccgctcgcaggtatggcagtggatc
cgctcgccgaagggtgtgctggaggacggccgcaaggtcacggcggacatggttcgggag
atgattcccgaggagctggaaaaagtgaaggtggtggcggcggacgggacgcatgcgagc
tacgaacgcgccgccgtcatcttcgaggagatgtcgacgtcggatgacttcgccgaattc
ctgaccttgccgttgtacgaggagatctga
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