KEGG   Hydrogenimonas sp. MAG: NNO_1443
Entry
NNO_1443          CDS       T05789                                 
Name
(GenBank) ATP-citrate (pro-S-)-lyase, subunit 2
  KO
K15230  ATP-citrate lyase alpha-subunit [EC:2.3.3.8]
Organism
hyo  Hydrogenimonas sp. MAG
Pathway
hyo00020  Citrate cycle (TCA cycle)
hyo00720  Other carbon fixation pathways
hyo01100  Metabolic pathways
hyo01110  Biosynthesis of secondary metabolites
hyo01120  Microbial metabolism in diverse environments
hyo01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:hyo00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00020 Citrate cycle (TCA cycle)
    NNO_1443
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    NNO_1443
Enzymes [BR:hyo01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.8  ATP citrate synthase
     NNO_1443
SSDB
Motif
Pfam: Ligase_CoA Citrate_synt Succ_CoA_lig
Other DBs
NCBI-ProteinID: BBG66146
UniProt: A0A3G9GXI9
LinkDB
Position
complement(1439769..1441592)
AA seq 607 aa
MSSRLFTKDTQAIFWNNNKSAIQRMLDYDYVIGREKPSVAAIVAPTSSNKFEKFFYGPDE
IMVPLYRNTADAVSEHKNADVLLNFASFRTAYDVSMEAINMGDQFKTIMVTAEGIPERLA
RKMNQAARDNGILVIGPATVGAITPGAFKIANIGGTIENIIKSKLHRAGSAGLVTRSGGL
FNELCNIISLNADGVAEGVAIGGDRFVGSVFIDNLLRMEENPDVKYMILLGEVGGTEEYK
VIEAVKSGKIKKPIIAWCIGTIAKHFSSGVQFGHAGASANAERETAEAKNAAMREAGIHV
PNSFNDLPQMIHQVYTDLKKEGVISEIEEPEVRTIPKNRKPKNFICTISDDRGEEATYAG
FPISSVATPDTGKGIGDVISLLWFKKQYPKWATDFIETVLKTVADHGPAVSGAHNAKVTA
RAGKSVVESLVTGLLTIGPRFGGAIDGAAKYFKYANDNNMTPQEFLAYMKKEGVPIPGIG
HRIKSLRNPDKRVEGLKKFAKEYFPSTPLLDYALTVEQLTTSKKDNLILNVDGTIGILMV
DMWRALGYSEQEIDEFIESGTLNSFFILGRTIGFIGHVLDEKRLAMPMYRHPFDDILYDV
EKAEKIQ
NT seq 1824 nt   +upstreamnt  +downstreamnt
atgagcagcagactttttacaaaagatacacaggcgattttctggaacaacaacaagagc
gctattcagagaatgctcgattacgactatgtgatagggcgtgagaaaccatctgtagcg
gctatagtcgcaccgacaagctcaaacaagtttgagaagttcttttacggaccggatgag
ataatggtaccgctgtatcgcaacaccgcggatgcggtcagtgaacacaaaaatgcggac
gttcttctcaacttcgcatcgttccgtaccgcatacgatgtctcgatggaagccatcaat
atgggagaccagttcaaaaccataatggtaacggcggagggtatcccggaaagactcgcg
aggaagatgaatcaggcggcaagagacaacgggatacttgtaataggaccggccacggtc
ggtgcgatcactcccggagccttcaagatcgccaatatcggcggcactatcgagaatatc
ataaaatcgaagctccacagagccggaagtgccggactcgttacacgctcaggcggtctc
ttcaacgagctttgtaatatcatctcactcaacgcggacggtgttgccgaaggtgttgcg
ataggcggtgacaggttcgtcggctctgtattcatcgacaaccttctaagaatggaagag
aatccggatgtcaaatatatgattctcctcggagaggtcggcggaaccgaagagtacaag
gttatcgaggctgtcaaaagcggcaagataaaaaaaccgatcatcgcatggtgtatcgga
acgatcgccaaacacttcagcagcggagtacagttcggccatgccggcgcgagtgccaat
gcggagcgtgaaaccgcagaggccaaaaacgccgcaatgcgagaagcgggaatacatgtg
ccaaacagcttcaacgatcttccccaaatgattcaccaggtatataccgacctcaaaaaa
gagggagtcatttccgaaatagaggagcctgaagtaagaaccattccaaagaaccgcaag
cccaagaacttcatctgtactataagcgacgaccgcggtgaagaggctacatacgcagga
ttcccgatcagctccgtcgccactcccgatacaggcaagggaatcggagatgtcatcagc
cttctttggttcaagaagcagtatccgaaatgggctacggacttcatcgaaacagttctc
aaaactgttgcggaccatggacctgcggtatccggtgcacacaatgccaaagttacggca
cgtgcaggaaaatctgtcgtagagtctcttgttacggggcttcttacaatcggcccgaga
ttcggaggcgcaatagacggtgccgcgaaatatttcaaatatgccaacgacaacaatatg
actccgcaggagttcctggcatatatgaaaaaagagggtgtgcctatccccggaatcgga
caccgaatcaagtcactgagaaacccggacaagcgtgtcgaaggtctcaaaaagttcgct
aaagagtacttcccgagtacacctcttctcgattacgctttgacagttgagcagttgacc
acttccaaaaaggacaatctcatcctgaatgtcgacggaactatcggtattctgatggta
gatatgtggcgcgccctcggttacagcgagcaggagatcgatgagtttatcgaaagcggt
acgctcaactcgttctttattctcggacgtacaatcggcttcatcggtcacgttctggat
gaaaaacgtctggctatgccgatgtatcgccatccgttcgacgatattctctacgatgtg
gagaaggctgaaaagattcagtaa

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