KEGG   Candidatus Sulfurimonas baltica: HUE88_09990
Entry
HUE88_09990       CDS       T07552                                 
Name
(GenBank) ATP citrate synthase
  KO
K15230  ATP-citrate lyase alpha-subunit [EC:2.3.3.8]
Organism
sbal  Candidatus Sulfurimonas baltica
Pathway
sbal00020  Citrate cycle (TCA cycle)
sbal00720  Other carbon fixation pathways
sbal01100  Metabolic pathways
sbal01110  Biosynthesis of secondary metabolites
sbal01120  Microbial metabolism in diverse environments
sbal01200  Carbon metabolism
Module
sbal_M00173  Reductive citrate cycle (Arnon-Buchanan cycle)
Brite
KEGG Orthology (KO) [BR:sbal00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    HUE88_09990
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    HUE88_09990
Enzymes [BR:sbal01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.8  ATP citrate synthase
     HUE88_09990
SSDB
Motif
Pfam: Citrate_synt Ligase_CoA Succ_CoA_lig GAPES3
Other DBs
NCBI-ProteinID: QOY51444
UniProt: A0A7S7LTW5
LinkDB
Position
complement(1990066..1991868)
AA seq 600 aa
MVQLFTKNTQAIFWNNNTTAIQRMLDYDYTIQRKTPSVAAIVAPTSGNKFEKFFYGPDEI
MVPLYKTTAAAKAAQPQADVLLNFASFRTAYEVTMEALNIGGFSSIMITAEGIPERLARK
MNEFAREQNVIVIGPATVGAIAPGAFKIANIGGTIENIVQSKLHRAGSCGLVTRSGGLFN
ELSNIISINADGIAEGVAIGGDRFVGSVFIDNMLRMEKNPAVKYMILLGEVGGTEEYKVI
EAIKEGKIKKPVIAWCIGTIAKYYDSGVQFGHAGASANGEMETAEYKNRAMAEVGIHVPA
SFNDLPIMINKVFNDLKLADIPEPEMSLCPSVRKSKEFICTISDDRGDEATYAGFPISSV
ATPDTGKGIGDVVSLLWFKKQYPKWATEFIETVIKTVADHGPAVSGAHNAKVTARAGKSV
VESLVTGLLTIGPRFGGAIDGAAKYFKHADDNNMDPKAFLNYMKGEGVPIPGIGHRIKSL
KNPDLRVEGLKKFAREYFPSTPLLDYALTVEQLTTSKKENLILNVDGTIGILMVDMWRAL
GYDEAEINEFIESGTLNSFFILGRTIGFIGHVLDEKRLAMPMYRHPMSDILYDVQMAEKI
NT seq 1803 nt   +upstreamnt  +downstreamnt
atggtacaactatttactaaaaatacacaagcaattttttggaataacaacactacggca
attcaaagaatgttggattacgattacacaattcaaagaaaaactccttcggtagctgct
atagtagctcctacaagcgggaataaatttgagaagtttttttatggaccggatgaaatc
atggtgccgctttataaaactacagctgctgcaaaagctgctcagcctcaagctgatgta
cttttaaattttgcatcttttagaactgcttatgaagtaactatggaagctttaaatatt
ggcggattcagctcaattatgattacagctgaaggtatccctgagagactagctcgtaaa
atgaatgaatttgctcgtgagcaaaatgttattgttattgggccggctactgttggtgca
atcgctccaggtgcatttaaaattgcaaatattggtggaacaattgaaaatattgttcaa
tcaaaacttcaccgtgcaggttcatgtggacttgtaacgcgttcaggaggtttatttaat
gaactttctaacattatctctataaatgctgacggtattgctgagggtgttgctattggt
ggggatagatttgttggatctgtatttattgacaacatgttaagaatggaaaaaaatcca
gcagtaaaatatatgattctacttggtgaagttggcggtacggaagagtataaggtaatt
gaagctataaaagaaggcaaaatcaagaaaccggttattgcttggtgtataggtacaatt
gctaaatactacgatagtggtgttcagtttggtcacgcaggtgcatctgcaaatggcgaa
atggaaacagctgaatataaaaacagagcaatggctgaagttggtatacatgtaccagca
tcatttaatgatttaccaattatgattaataaagtatttaatgacttgaaacttgctgac
atccctgaacctgaaatgagtctttgtcctagcgttagaaagtctaaagagtttatttgt
acgatttctgatgatagaggcgacgaagcaacatatgcaggtttcccaatctcttctgtt
gctactcctgatactggtaaaggtatcggtgatgttgtatcactattatggttcaaaaaa
cagtatccaaaatgggctactgagtttattgaaacagtaatcaaaactgttgctgaccac
ggtcctgctgtttctggtgctcataatgcaaaagtaacagctcgtgcaggaaaatcagtt
gttgagtcacttgtaactggtcttttaactatcggtccaagatttggtggtgctatagat
ggcgctgctaagtatttcaaacatgctgatgataacaatatggatcctaaagcattcttg
aactacatgaaaggtgaaggtgttccaattccaggtattggacatagaattaaatctctt
aaaaacccagacttacgtgttgaaggtcttaagaaatttgctcgtgagtattttccatca
acacctttacttgactacgcattaactgttgagcaattgactacatctaaaaaagagaat
cttattcttaatgttgatggtacaattggtatcttaatggtagacatgtggagagcactt
ggttatgatgaagctgaaatcaatgaatttattgaatcaggtactcttaactcattcttt
attttaggtcgtacaatcggttttatcggtcacgtactagatgaaaaacgtcttgcaatg
ccaatgtacagacacccaatgtctgacattctttacgatgttcaaatggcagaaaaaata
taa

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