KEGG   Burkholderia sp. PAMC 28687: AX768_19890
Entry
AX768_19890       CDS       T05699                                 
Name
(GenBank) 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_19890
   00630 Glyoxylate and dicarboxylate metabolism
    AX768_19890
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_19890
SSDB
Motif
Pfam: Citrate_synt HTH_17
Other DBs
NCBI-ProteinID: AMM16419
LinkDB
Position
2:997998..999170
AA seq 390 aa
MGWITAAEALGMLGVRPQTLYANVSRGKIRAQPDKADSRRSLYHREDVLRMAKRSNGRRK
VETVAAQAIEWGDPVLPSAISTVIDGRLWYRGLDAVALSGTASLEDVAALLWDCPEAPRL
RPATRGDRVIHGRGGFGGALRAGLIALSERSANDLPSIGRALPVLREEAASVLVTLAQAM
LGNEESSGDRPLSEHISTLWARRDAEDMIRRALVLLADHELNASTFAARVTISTGASLAA
GMLAGLASLTGPLHGRASLSLNALIASTERLGVEQAVREWLAQGRTLPGFGHPLYPDGDV
RAAALLELLPTRRAYTELLGYVARSVGEAPNIDFALAVIAETFDLPAEAPFILFALGRCV
GWLAHALEQVEAHRLIRPRARYVGVVPDVE
NT seq 1173 nt   +upstreamnt  +downstreamnt
atgggctggattacggcagcagaagcacttggcatgttgggcgtccgtccgcagacgctt
tacgcaaacgtaagcagggggaaaatccgcgcgcaaccggacaaggctgatagccgccgc
agcctctaccatcgcgaggacgtactgcgaatggcgaagcgtagcaacggtcgaaggaaa
gtcgagacggtcgccgcccaagccattgagtggggtgaccctgtgctgccgtcggccata
tccacggtgatcgatggacggctctggtatcgcggtctggacgctgttgcgctttcagga
acggcctcgctggaagacgtcgccgctttgctgtgggactgcccggaggcgccccgtttg
cgacccgcgaccaggggcgatcgtgtcattcatggccgtggcggtttcggtggcgccttg
cgtgcgggactcattgcgttgtcggagcgaagcgcaaacgacctgccgtcaataggccgt
gcgctgccagttctccgcgaagaggcggcaagcgtgctcgtgaccttagcccaggcgatg
cttggaaacgaagagtcaagcggcgaccgcccgctgagcgaacatatctcgaccttatgg
gcacgcagggacgcggaggacatgattcgccgtgcgcttgtcctgcttgcagaccatgaa
ctgaatgcatccacgtttgccgcgcgcgtgactatttcgacgggcgcttccctggcggca
gggatgcttgcggggcttgcgtcactgaccggtccactccacgggagagcgtcgctgtcg
ctcaatgcgctgatcgcatcgacagagcgtcttggcgttgagcaagccgtacgcgaatgg
ctggcgcagggacggacgttaccggggttcggacacccgctttatccggacggcgacgtc
cgggccgccgcgttgctggagttgctgccaacgcgtagggcttatacggaactcctgggc
tatgtggcgcgttctgttggtgaagcgcctaatatcgacttcgcgctcgccgtcattgcc
gagacattcgacttgccagccgaggcgccgtttatcctgttcgcgcttggccggtgcgtc
gggtggctcgcacacgcgctggagcaagtggaagcgcatcgtctgatccgtccgcgggca
cgttatgtcggcgtcgtgccggacgttgaatag

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