Burkholderia sp. PAMC 28687: AX768_22915
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Entry
AX768_22915 CDS
T05699
Symbol
gltA
Name
(GenBank) type II citrate synthase
KO
K01647
citrate synthase [EC:
2.3.3.1
]
Organism
bui
Burkholderia sp. PAMC 28687
Pathway
bui00020
Citrate cycle (TCA cycle)
bui00630
Glyoxylate and dicarboxylate metabolism
bui01100
Metabolic pathways
bui01110
Biosynthesis of secondary metabolites
bui01120
Microbial metabolism in diverse environments
bui01200
Carbon metabolism
bui01210
2-Oxocarboxylic acid metabolism
bui01230
Biosynthesis of amino acids
Module
bui_M00009
Citrate cycle (TCA cycle, Krebs cycle)
bui_M00010
Citrate cycle, first carbon oxidation, oxaloacetate => 2-oxoglutarate
bui_M00012
Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:
bui00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
AX768_22915 (gltA)
00630 Glyoxylate and dicarboxylate metabolism
AX768_22915 (gltA)
Enzymes [BR:
bui01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.1 citrate (Si)-synthase
AX768_22915 (gltA)
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GFIT
Motif
Pfam:
Citrate_synt
Motif
Other DBs
NCBI-ProteinID:
AMM17116
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All DBs
Position
3:16437..17738
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AA seq
433 aa
AA seq
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MTPSDVKATLSFSDNSPSVEMPIYKGTLGPDVIDIRKLYGQTGKFTYDPGFMSTAACNSA
ITYIDGDKGELLYRGYPIEELAVKADFLETCYALLHGDLPTAEQKEEFVETVTKHTMVHE
QMHFFFRGFRRDAHPMAVLVAAVGALSAFYHDSLNINDPRHRDVSAIRMIAKLPTLVAMA
YKFTIGQPFVYPKNDLSYSANFMHMMFSNPCEEYKVNDVLVRALDRILILHADHEQNAST
STVRLAGSSGANPFACIAAGIACLWGPAHGGANEAALNMLEEIGSVDNIPEFIKQVKDKN
SGVKLMGFGHRVYKNYDPRAKLMRETCHEVLEELGLHDDPLFKLAMALEKIALEDEYFVS
RKLYPNVDFYSGIVQRALGIPTAMFTCVFAMARTVGWIAQWNEMIADPEQKIGRPRQLFI
GDTPREAKAIDQR
NT seq
1302 nt
NT seq
+upstream
nt +downstream
nt
atgaccccgtcagatgttaaagccacgctatcgttcagcgacaactcgccgagcgtcgaa
atgccgatttacaagggtaccctgggcccggacgtaatcgacatccgcaagctgtacggc
cagaccggcaagttcacctacgatccgggcttcatgtcgacggcggcgtgcaattccgcg
atcacgtacattgacggtgacaagggcgagttgctgtatcgcggatatccgatcgaggaa
ctcgcggtcaaggccgactttctcgaaacctgctacgcgctgttgcatggcgacctgccg
accgccgagcagaaggaagagttcgttgaaaccgtcacgaagcacacgatggttcacgag
cagatgcacttcttcttccgcggtttccgtcgcgacgcacacccgatggccgtcctcgtg
gcagccgtcggcgcattgtcggcgttctatcacgactcgctgaacatcaacgatccgcgt
caccgcgacgtatcggctattcgcatgatcgcgaagctgccgacgctggtggccatggcg
tataagttcacgatcggtcagccattcgtgtatccgaagaacgacctgtcgtacagcgct
aacttcatgcacatgatgttctcgaacccgtgcgaagagtacaaggtcaacgacgtgctc
gtgcgcgcgctggatcgcatcctgatcctgcatgctgaccatgagcagaatgcatcgaca
tcgaccgtgcgtctggccggttcgtcgggtgcaaatccgtttgcgtgtattgctgccggt
attgcttgtctgtggggtccggcgcatggcggcgcgaacgaagctgcgttgaacatgctg
gaagagatcggctcggtcgacaacattcctgagttcatcaagcaggtcaaggacaagaac
tcaggcgtgaagctgatgggcttcgggcatcgcgtgtacaagaactacgatccgcgtgcg
aagctgatgcgtgaaacatgccacgaagtgctcgaagaactgggtctgcatgacgacccg
ttgttcaagctcgcaatggcgctggaaaagattgcgctggaagacgaatactttgtttcg
cgcaagctgtatccgaatgtcgatttctactcgggtattgttcagcgcgcgctcggcatt
ccgacggccatgttcacgtgcgtgtttgcaatggcgcgtaccgtgggctggattgcgcag
tggaacgaaatgatcgctgatccggaacagaagattggccgtccgcgtcagttgttcatc
ggcgatacgccgcgtgaagcgaaggcgattgatcagcgctaa
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