KEGG   Chlorobium limicola: Clim_1231
Entry
Clim_1231         CDS       T00766                                 
Name
(GenBank) ATP-citrate lyase/succinyl-CoA ligase
  KO
K15230  ATP-citrate lyase alpha-subunit [EC:2.3.3.8]
Organism
cli  Chlorobium limicola
Pathway
cli00020  Citrate cycle (TCA cycle)
cli00720  Other carbon fixation pathways
cli01100  Metabolic pathways
cli01110  Biosynthesis of secondary metabolites
cli01120  Microbial metabolism in diverse environments
cli01200  Carbon metabolism
Module
cli_M00173  Reductive citrate cycle (Arnon-Buchanan cycle)
cli_M00614  Anoxygenic photosynthesis in green sulfur bacteria
Brite
KEGG Orthology (KO) [BR:cli00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    Clim_1231
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    Clim_1231
Enzymes [BR:cli01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.8  ATP citrate synthase
     Clim_1231
SSDB
Motif
Pfam: Citrate_synt Ligase_CoA Succ_CoA_lig CoA_binding
Other DBs
NCBI-ProteinID: ACD90298
UniProt: B3ECM3
LinkDB
Position
complement(1328437..1330269)
AA seq 610 aa
MSILANRDTQVVIIGGVAGLNAARRMAQFDFLINRPLSVQAFVYPPEEGQQKEIYRGGEL
KNVPVYSSLEDALAENPGINTALIYIGANRAYQAAKEALEASSIKLVSMITEGVPEKDAK
RLRKLAIEAGKLFNGPSSIGIMSAGECRLGVIGGEFKNLKLCNLYRSGSFGVITKSGGLS
NEAMWLCAQNGNGITTAVAIGGDAYPGTDFVTYLEMFEKDPETKAVVIVGEVGGTLEDEA
AEWLAAEKRRIRLVATIGGTCQEVLPQGMKFGHAGAKEGKKGVGSARAKMNALRDAGALV
PDTFGGLSKCIKQVYEELLADGSIKPEPEIDEALLPELPLKVQEIMKQGEVIVEPLIRTT
ISDDRGEEPRYVGYAASELCEKGYGIEDVLSLLWSKKLPSREESEIIKRIIMISADHGPA
VSGAFGAIIGACAGIDLPQAVSAGMTMIGPRFGGAVTNAGKYFKYGVKEFPNDIPGFLSW
MKQNVGPVPGIGHRVKSVKNPDKRVKYLVDYVKNHTSLHTPCLSYALEVEKITTSKKDNL
ILNVDGTIGCILVDLDFPEQSLNGFFVLARTIGMIGHWIDQTTQGSKLIRLYDYLINYAV
KEEREVPVKK
NT seq 1833 nt   +upstreamnt  +downstreamnt
gtgagtatattagcaaatagggatacacaggttgtcatcataggtggcgttgccggcctg
aatgccgcaaggaggatggcccagtttgactttctgatcaacaggccgctctctgtacag
gcatttgtctatccccccgaagaaggccagcagaaagagatctaccgtggcggtgagctg
aaaaacgttcccgtctattcgtcactcgaagatgcactggctgaaaacccgggaatcaat
acagcccttatctatatcggggcaaaccgtgcctaccaggccgcaaaggaagcgcttgaa
gcaagcagcatcaagctggtttcaatgattaccgaaggcgttcctgaaaaggatgccaaa
agactgagaaaacttgccatcgaagccggcaagctcttcaacggtccctcctccattggc
atcatgtcggcaggggagtgccgtctcggcgtcatcggcggcgagttcaaaaacctcaag
ctctgcaacctttaccgttcaggctcattcggcgtcatcaccaagtcgggcgggctttcg
aacgaagccatgtggctctgcgcacaaaacggcaacggcattaccacggccgtggctatc
ggaggcgatgcctatcccggtaccgatttcgtcacctacctggaaatgttcgaaaaagac
cctgaaaccaaggctgtcgttattgtcggcgaagtcgggggaaccctcgaagatgaagct
gccgaatggctcgcagctgaaaaacgccgtatccgtcttgtcgcaacaatcggcggaacc
tgtcaggaggtactgcctcagggcatgaaattcggacatgccggggcaaaagagggcaag
aagggcgtcggttcggcacgtgcaaaaatgaacgcactgcgcgatgcgggagctctcgta
cccgacaccttcggcggcctgtcgaaatgcatcaagcaggtttacgaagagctgctcgcc
gacggaagcatcaaaccggaaccggagatcgacgaggcgctgctgccggaactgccgctg
aaagttcaggaaatcatgaagcagggcgaagtgatcgtcgaaccgctcattcgtaccacc
atttccgacgaccgcggagaggagccccgttatgtcggttatgccgcttcggaactctgc
gaaaagggttacggcatcgaagatgtcctcagcctcctctggagcaagaagctgccttca
cgtgaagagtcggaaatcatcaaacgcatcatcatgatctccgccgaccacggtccggca
gtatccggcgcattcggagcaatcatcggcgcctgtgcaggcatcgatctgcctcaggca
gtatctgccggtatgaccatgatcggcccgcgattcggcggagctgtcaccaatgccggt
aaatatttcaagtacggcgtcaaggagttcccgaacgatattcccggattcctctcatgg
atgaagcagaatgtcggtccggttcccggaatcggccaccgcgtcaaaagcgtgaaaaac
cctgacaagcgggtgaagtacctggtcgactatgtcaagaaccacacctcgctgcacacc
ccttgcctgagctatgcgctcgaggtcgaaaagatcaccacgtcgaaaaaagacaacctg
attctcaacgtggacggtaccatcggctgtattctcgtcgatctggacttcccggaacag
tcgctcaacggcttcttcgttctggcccgtaccatcggcatgatcggccactggatcgat
cagaccacccagggatcgaagctgatcaggctgtacgactacctgatcaactacgcggta
aaggaagagcgcgaagtacccgtaaagaagtaa

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