KEGG   Sulfurimonas aquatica: GJV85_09550
Entry
GJV85_09550       CDS       T08902                                 
Name
(GenBank) ATP citrate synthase
  KO
K15230  ATP-citrate lyase alpha-subunit [EC:2.3.3.8]
Organism
saqt  Sulfurimonas aquatica
Pathway
saqt00020  Citrate cycle (TCA cycle)
saqt00720  Other carbon fixation pathways
saqt01100  Metabolic pathways
saqt01110  Biosynthesis of secondary metabolites
saqt01120  Microbial metabolism in diverse environments
saqt01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:saqt00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    GJV85_09550
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    GJV85_09550
Enzymes [BR:saqt01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.8  ATP citrate synthase
     GJV85_09550
SSDB
Motif
Pfam: Ligase_CoA Citrate_synt Succ_CoA_lig NAGLU
Other DBs
NCBI-ProteinID: QSZ42338
UniProt: A0A975GDG5
LinkDB
Position
complement(2019540..2021342)
AA seq 600 aa
MEQLYTKDTQAIFWNNNKTAIQRMLDYDYTIQRKTPSVAAIVAPTSGNKFEKFFFGPDEV
MIPLFKTTADAKAAQPQADVLLNFASFRTAYDVTMEALKIGGFSSIMITAEGIPERLARG
MNEKARALGVTVIGPATVGAITPGAFKVANIGGTITNIVNSKLHRAGSCGLVTRSGGLFN
ELSNIIAINADGIAEGVAIGGDRFVGSVFIDNLLRMEKNPEVKYMILLGEVGGTEEYKVI
EAIKDGRITKPVIAWCIGTIAKYYDSGVQFGHAGASANAESETAEFKNRAMAEAGIHVPA
SFNELPAMIKKVFTDLNLADIPEPAMSVCPTVRRSKEFICTISDDRGDEATYAGFPISSV
ATPDTGKGIGDVVSLLWFKKQYPKWATDFIETVIKTVADHGPAVSGAHNAKVTARAGKSV
VESLVTGLLTIGPRFGGAIDGAAEHFKYADDNGLTPKEFLGYMKKEGIPIPGIGHRIKSL
KNPDLRVTGLMNYAAEHFPSTPLLDYARTVEALTTSKKENLILNVDGTIGILMVDMWRAL
GYSEEDINEFISSGTLNAFFIVGRSIGFIGHVLDEKRLAMPMYRHPMDDILYDVPVAEKI
NT seq 1803 nt   +upstreamnt  +downstreamnt
atggaacaactatatacaaaagacacacaagctattttttggaataataataaaactgct
atccaaagaatgttagattacgattatacaattcaaagaaaaactccttcagtagctgca
attgttgcaccaacaagtggaaataaatttgagaagttcttttttggaccagatgaagtt
atgattcctcttttcaaaactactgcggatgctaaagctgctcagccacaagctgatgta
cttttaaactttgcatcatttagaactgcttatgatgtaactatggaagctttaaaaatt
ggtggtttttcatctataatgattactgctgaaggtattcctgagcgtctagcacgtggt
atgaatgaaaaagcaagagcattaggtgtaactgttatcgggccagcaactgttggtgct
ataactccaggtgcgtttaaagttgcaaatattggtggtactattacaaatatcgttaac
tctaaacttcaccgtgcaggttcttgtggacttgttactcgttcaggtggtctgtttaat
gagctttctaacataatcgctattaacgctgatggtattgctgagggcgttgctattggt
ggagatagatttgttggatcggttttcattgacaatcttcttagaatggagaaaaatcca
gaagttaaatatatgattcttcttggtgaagttggtggtacggaagagtataaagtaatt
gaagctatcaaagatggtcgtattactaagccagttattgcatggtgtattggtacaatc
gctaagtattatgactctggcgttcagtttggtcatgcaggtgcatctgcaaatgctgag
tctgaaactgctgagtttaaaaacagagcaatggctgaagcaggtatacatgtaccagcc
tcattcaatgaactacctgcaatgataaaaaaagtatttactgatcttaacttagcagat
attccagagccagctatgagtgtatgtcctactgttagaagaagtaaagagtttatctgt
actatttctgatgatcgtggtgatgaggctacttatgcaggtttcccaatatcttcagtt
gctactccagatactggcaaaggcattggtgatgttgtatcacttttatggttcaaaaaa
cagtatccaaaatgggctacagactttatcgaaactgtaattaaaactgttgcagatcat
ggtcctgctgtttctggtgctcacaatgcaaaagtaactgcacgtgctggtaaatcagtt
gttgagtcacttgtaactggtcttttaacaattggtccacgttttggtggagctatagat
ggtgcagctgagcacttcaaatatgcagatgacaatggactaactccaaaagaattctta
ggttatatgaaaaaagaaggtattccaattccaggtattggtcaccgtattaagtcactt
aaaaatccagacttacgtgtaactggtcttatgaattatgcagcagagcattttccatca
actccactattagactatgcaagaactgttgaagctcttactacatctaaaaaagagaac
cttatcttaaatgttgatggtactattggtatcttaatggtagatatgtggagagcttta
ggttattctgaagaagatataaatgaatttatctcttctggtacgctgaacgcattcttt
attgttggtcgttcaatcggtttcatcggtcatgtactagatgaaaaacgtcttgctatg
ccaatgtatagacatccaatggatgatatcttatatgatgttcctgtagctgaaaagata
taa

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