Phyllobacterium meliloti: LLE53_012810
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Entry
LLE53_012810 CDS
T11258
Name
(GenBank) malate synthase G
KO
K01638
malate synthase [EC:
2.3.3.9
]
Organism
pmel Phyllobacterium meliloti
Pathway
pmel00620
Pyruvate metabolism
pmel00630
Glyoxylate and dicarboxylate metabolism
pmel01100
Metabolic pathways
pmel01110
Biosynthesis of secondary metabolites
pmel01120
Microbial metabolism in diverse environments
pmel01200
Carbon metabolism
Module
pmel_M00012
Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:
pmel00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
LLE53_012810
00630 Glyoxylate and dicarboxylate metabolism
LLE53_012810
Enzymes [BR:
pmel01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.9 malate synthase
LLE53_012810
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
MS_TIM-barrel
MSG_insertion
MS_C
MS_N
Motif
Other DBs
NCBI-ProteinID:
UGX85338
LinkDB
All DBs
Position
complement(2601056..2603236)
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AA seq
726 aa
AA seq
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MSERIEINGLKVAKELYDFVASEAIAGTSVNADAFFEGLAAIVDDLSPKNRALLAKRDAF
QEKLDAFYREKRNTGYTQDEYEAFLREIGYLLPEGGAFSVSTDNVDPEIAVTAGPQLVVP
VMNARYALNAANARWGSLYDALYGTDAIPETDGAEKGKAFNPVRGARVIAWAKAFLDDSA
PLDGGSWADVTVLSVDHGALALKDGNGAVLPLKDQAQFVGYKGDAAKPSAVLLVKNGMHV
EVVVNADHPIGKTDRANIADVVLESALTTIQDCEDSVAAVDAEDKVVIYRNWLGLMNGDL
QDTFDKGGKSVTRKLNPDRDYTGKDGKPVTLPGRSLMLVRNVGHLMANPAILDKDGNEVP
EGIMDAAITGLIALHDVGPNGRRMNSRAGSMYVVKPKMHGPEEVAFASELFGRVEALLGM
QPNTMKMGIMDEERRTTVNLKEAIRAAKERVVFINTGFLDRTGDEIHTSMEAGPMIRKGD
MKQASWIGAYENWNVDVGLECGLSGHAQIGKGMWAMPDLMAAMLEQKIAHPKAGANTAWV
PSPTAATLHATHYHKVNVAEVQAQLKSRGRAKLSDILSVPVASRPNWTPEDIQRELDNNA
QGILGYVVRWVDQGVGCSKVPDINNVGLMEDRATLRISAQHIANWLHHGVASRAQVLETL
KRMAAVVDKQNEGDPLYQPMAADFDGSIAFQAACDLVFEGRAQPNGYTEPVLHRRRLELK
AQRAAA
NT seq
2181 nt
NT seq
+upstream
nt +downstream
nt
atgagtgagcgtatcgagatcaacggactgaaggtggcaaaggaactctacgatttcgtg
gcgagcgaagccattgccggaacttcagtcaatgccgatgccttcttcgaaggattggct
gctatcgttgacgacctctcgccaaaaaaccgggcgctgctggccaagcgcgatgctttt
caggagaagctggacgccttctatcgcgagaagcgcaatacgggatacacacaggacgag
tacgaagcctttctgcgcgagataggctatttgctgcccgaaggcggcgctttttccgtc
tcgactgataatgttgacccggagatcgctgtcactgctggaccgcagctcgtcgtgcct
gtcatgaatgcccgctatgcgctcaacgctgccaatgcccgttggggttcgctctatgat
gcgctctatggcaccgatgcgatcccggaaaccgatggcgccgaaaaaggcaaggcgttc
aatcccgtgcgcggtgcgagggtcatcgcctgggccaaggcatttctggatgatagtgcg
cctctcgacggcggaagctgggcggatgttaccgttctttcggttgatcacggcgcattg
gcgctaaaggacggtaatggagcggttttaccgctgaaggatcaggcgcagttcgttggt
tacaagggcgatgcggccaagccatcggctgttcttctggtcaagaacggcatgcatgtg
gaagtcgtcgtcaatgccgatcacccgattggcaagactgaccgggccaatattgccgat
gtggttttggagtcagcgctcaccacaattcaggattgcgaagattccgttgctgccgtt
gatgcggaagacaaggttgtcatctatcgcaattggctcgggctgatgaatggcgatctg
caggatacgtttgataagggtggcaaatcagtcacgcgcaagctcaatcccgatcgcgac
tatacgggtaaggatggcaagcctgttaccctgccgggccgctcgcttatgctggtgcgc
aatgtcggccacctcatggccaatccggctattctcgacaaggatggtaacgaagtgccc
gagggcattatggatgcggcaatcaccggtttgatcgcgctgcacgatgtcggcccgaat
ggtcgccgcatgaattcgcgtgccggttccatgtatgtggtgaagccaaagatgcatggt
cccgaagaagtggcctttgcgtcggaactgtttgggcgcgtcgaagcactgcttggcatg
cagcccaacacgatgaagatgggcatcatggatgaggaacgccgcacaacggttaacctc
aaggaagcgatccgtgcggcgaaggaacgggttgtgttcatcaataccggtttccttgat
cgtaccggcgacgaaattcatacatccatggaagccgggccgatgatccgcaagggcgat
atgaagcaggcgtcatggattggcgcttatgagaactggaatgtcgatgtgggtcttgaa
tgcggcctttccggtcacgcgcagatcggcaagggcatgtgggccatgcccgatttgatg
gccgcaatgctggagcagaagatcgcccatccaaaggctggcgccaacaccgcatgggtg
ccttcaccgaccgccgcgacgctgcatgcaacgcactatcacaaggtcaatgtggcagag
gttcaggcccagttgaagtcgcgcgggcgcgccaaactcagcgatatcctgtcggtgcct
gttgcctcgcggcccaactggacacccgaagatatccagcgcgaactcgacaacaatgcg
cagggcattctcggttatgtcgtgcgctgggttgatcagggtgttggttgctccaaggtt
cctgacatcaacaatgtcggcctgatggaagaccgcgctactttgcgcatttccgcccag
cacatcgccaactggctgcaccatggcgttgccagccgtgcgcaagtgctggagaccctg
aagcgcatggctgctgtcgttgacaagcagaacgaaggcgatccgctttaccagccaatg
gctgcggatttcgatggatcaatcgcctttcaagccgcctgtgatctcgtgttcgaaggt
cgggcccagccgaatggctatacggagccggtcctgcatcgccgcaggctggaactgaaa
gcccagcgcgccgcagcatag
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