KEGG   Sulfurihydrogenibium azorense: SULAZ_0528
Entry
SULAZ_0528        CDS       T00876                                 
Name
(GenBank) ATP-citrate synthase (ATP-citrate (pro-S-)-lyase)(Citrate cleavage enzyme)
  KO
K15230  ATP-citrate lyase alpha-subunit [EC:2.3.3.8]
Organism
saf  Sulfurihydrogenibium azorense
Pathway
saf00020  Citrate cycle (TCA cycle)
saf00720  Other carbon fixation pathways
saf01100  Metabolic pathways
saf01110  Biosynthesis of secondary metabolites
saf01120  Microbial metabolism in diverse environments
saf01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:saf00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    SULAZ_0528
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    SULAZ_0528
Enzymes [BR:saf01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.8  ATP citrate synthase
     SULAZ_0528
SSDB
Motif
Pfam: Citrate_synt Ligase_CoA Succ_CoA_lig NAGLU
Other DBs
NCBI-ProteinID: ACN98645
UniProt: C1DTT2
LinkDB
Position
473634..475484
AA seq 616 aa
MSKPEYLLFDRNTKAIFWNLNTNAIQRMLDYDYVVGRSPSIAAIVAPTSERSFEKFFYGT
KEIIIPIYKSTKEAAKFHPEADVLLNFASFRTAYPVTLEAFEIPTIRTIIITAEGIPERF
ARDMRIKAKQLGKWIIGPATVGGIAPGAFRIANTGGTIENIIASKLHRPGSVGLVTRSGG
LFNELSNIIARNADGVAEGIAIGGDRFPGSDFLDHMLRFEKNPQVEFMILLGEVGGEAEY
KVVEAVKNGLITKPVIGWCIGTISKFFGGEVQFGHAGAKAGVDRETADAKNRAMREVGIH
VPNNFNELPHVIKGIYEMLRGEGKIRPVVEPEVPPIPEDLSKAIREGKVRKPTNFICTIS
DDRGEEATYCGVPISEVIEKGLTIADVIGLLWFKRKFPTWASNFIDMVIRVVADHGPAVA
GAHNVKVTARAGKDLMSSLATGILAIGPRFGGAIDGAAKYFKMAYEKNMLPHEFVEYMKN
VEKIPIPGIGHRVKSTKNPDKRVELLKDYARRNFPKVELLDYALEVEKVTTSKKENLILN
VDGTIGVLLVDLFKTIGYSNEEIDNMIEAGAFNAFFVLGRSIGFIGHYLDEKRLDMPLYR
HPTDDILYDVKRPEGV
NT seq 1851 nt   +upstreamnt  +downstreamnt
atgagcaaacctgaatacttactttttgacagaaacactaaggctattttctggaacctt
aacacaaatgctattcaaaggatgttagactacgactatgtagttggaagaagtccaagt
atagcagcaatagtagctccaacttcagaaagatcttttgaaaagtttttctatggaaca
aaagagataataatacctatttataaatctacaaaagaagctgcaaaattccatccagaa
gctgatgttttattaaactttgcttcttttagaacggcgtatcctgttacattagaagca
tttgagatacctacaataagaacgatcataatcactgcagaaggtataccagaaagattt
gctagagatatgaggataaaagctaaacaacttggtaagtggattattggtcctgctaca
gttggaggtatagcaccaggagctttcagaatagcaaacacaggtggaacaatagaaaac
ataattgcgtctaaactccatagacccggttcagttggattagtgacaagatcaggaggt
ttatttaacgaactttccaacataatcgcaagaaacgctgatggtgtagcagaaggtata
gctataggtggagatagatttccagggtcagactttttagaccatatgctaagatttgag
aaaaaccctcaagttgaatttatgatacttcttggagaagttggtggagaggcggagtac
aaagtagtagaagctgttaaaaacggacttattacaaaacctgtgataggttggtgtatt
ggaacaatatcgaaattctttggaggagaagttcaatttggacacgccggagctaaggca
ggagttgacagagaaacagcagacgctaaaaatagagcaatgagagaagtaggaatccac
gttccaaacaactttaacgaacttcctcacgtaataaaaggaatatatgaaatgttaaga
ggtgaaggaaaaatccggcctgttgtagaaccggaagttcctccaattcctgaagatctc
tcaaaagccatcagagaaggaaaagtaagaaaacctacaaactttatatgtacaatctct
gatgatagaggagaagaagctacttactgtggagttcctataagtgaagttattgaaaaa
ggtttaacgatagcagatgttataggattactttggtttaagcgtaaattccctacttgg
gcatctaattttatagatatggttattagagtagttgcagaccatggaccagcagtagca
ggagctcacaacgtaaaagtaacagcaagagccggaaaagacctaatgtcttcgttggca
acaggtatactagcaataggtccaagatttggaggagctatagacggagctgcaaaatac
tttaaaatggcttatgaaaagaacatgttacctcacgaatttgtagagtatatgaagaat
gttgaaaaaatacctattccgggaataggacacagggtaaaatctacaaaaaatcctgat
aaaagggtagaacttttaaaagattatgctagaagaaactttcctaaggttgagctttta
gactatgcgttagaagttgaaaaagtaacaacctctaagaaagagaaccttatactaaac
gttgacggaacaattggtgttttactagttgacctgtttaaaactataggttactctaac
gaagagatagataatatgatagaagcaggtgcatttaacgctttcttcgttcttggaaga
tctataggatttataggtcactacttagacgaaaaacgtttagatatgccactttacaga
catccaactgatgatatcctttacgatgtaaaaagacctgaaggagtataa

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