KEGG   Arcobacter aquimarinus: AAQM_2071
Entry
AAQM_2071         CDS       T06604                                 
Name
(GenBank) acyl-CoA synthetase (AMP-forming) / AMP-acid ligase II (CitE domain)
  KO
K01895  acetyl-CoA synthetase [EC:6.2.1.1]
Organism
aaqi  Arcobacter aquimarinus
Pathway
aaqi00010  Glycolysis / Gluconeogenesis
aaqi00620  Pyruvate metabolism
aaqi00630  Glyoxylate and dicarboxylate metabolism
aaqi00640  Propanoate metabolism
aaqi00680  Methane metabolism
aaqi00720  Other carbon fixation pathways
aaqi01100  Metabolic pathways
aaqi01110  Biosynthesis of secondary metabolites
aaqi01120  Microbial metabolism in diverse environments
aaqi01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:aaqi00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    AAQM_2071
   00620 Pyruvate metabolism
    AAQM_2071
   00630 Glyoxylate and dicarboxylate metabolism
    AAQM_2071
   00640 Propanoate metabolism
    AAQM_2071
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    AAQM_2071
   00680 Methane metabolism
    AAQM_2071
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01004 Lipid biosynthesis proteins [BR:aaqi01004]
    AAQM_2071
Enzymes [BR:aaqi01000]
 6. Ligases
  6.2  Forming carbon-sulfur bonds
   6.2.1  Acid-thiol ligases
    6.2.1.1  acetate---CoA ligase
     AAQM_2071
Lipid biosynthesis proteins [BR:aaqi01004]
 Acyl-CoA ligase
  Short/medium chain acyl-CoA ligase
   AAQM_2071
SSDB
Motif
Pfam: AMP-binding HpcH_HpaI AMP-binding_C C-C_Bond_Lyase AMP-binding_C_3 PK
Other DBs
NCBI-ProteinID: QKE26783
UniProt: A0AAE7E167
LinkDB
Position
2050805..2053324
AA seq 839 aa
MNETIKIDIPEFLNIGVACTSAHVGTARENNIAMVIEDDKLGTDEITYKDLATKSDQVCN
FFTGIGLEPRDRVLVCLKNSLAYPISFFGTMKAGIIAVPTSTLLSGSEVKYLAEDSQARA
IVLSATMYENLVPYLENLDNLKTIVVAGIDSVEELKKPKDINVYALNEIFKSTDKTPNHY
NSKSGEPAYLVYTSGTTGYPKGVLHSHRSLVGRKPATDYWFDFKENDRIMHSGKFNWTYV
LGSALMDPLFNGHTVIAYEGSNDASTWIDLIKKHQCTIFIGVPTIYRQIIQKTDFTLDDC
PSLRYCMSAGEHLSDEMLGLWRDRFKQDIFEAIGMSECSYYISHSKYNPIRPGSAGFPQP
GHIVKLLDPETLEEVGVEEEGMICIGEDDPGLFLEYWQLEEETAKSRHDGYFFTGDYARK
DKDGYIWFIGRKDDIINTFGFRVSPHEIERVVKTNDLVADCVAFGLDIGKDKTIVAIAVV
GYKELTKEQEDEVLKFAQANLAKYKAPKEIFTMADYPRTKNGKVLRKQLVKQLHDLYHAQ
ESGEEIVEYKARRSMLFIPSYNKQNVQKAKTVLADTVIFDLEAILQEQREVGRETLRQVY
KEDGAKFGESERVLRINNLGTEDLKKDLELAREIELDGLLFSKIDCKEDVLEAEKLINEV
NPNLSLMIMIETPMSVLNIHEICAASTKVEVVVVGSNKLANRLQIDIKKGSKAMFNYLSQ
IALASKAYGKTVIDGPHFDVHDEFACEDSTKDAFNLGFDGKSLIHPVQIEYINDIFTPKQ
SEVEDYEKMIAKYEEAAREGKEVILHNDRLVDSSRIKWAKKMITLYETYKALGQNLFNK
NT seq 2520 nt   +upstreamnt  +downstreamnt
atgaatgaaacaattaaaatagatataccagaatttttaaatattggtgttgcttgtaca
tcagcacacgttggaacagcaagagaaaacaatattgcaatggtaattgaagatgacaaa
ttaggaactgatgaaattacatataaagatttagcaacaaaatctgatcaagtttgtaat
ttctttacgggaattggtcttgagccaagagatagagtattagtttgtttaaaaaactct
cttgcttaccctatttcgttttttggaacaatgaaagctggaattatagcagttccaact
tcaacacttttaagtggtagtgaagttaaatatcttgctgaagattcacaagcaagagct
attgtattaagtgcaacaatgtatgaaaacttagttccatatttagaaaatttagataat
ttaaaaactatagtagttgctggtattgatagtgttgaagagttaaaaaaaccaaaagat
attaatgtttatgcattgaatgaaatttttaaatcaactgataaaacaccaaatcactat
aattcaaaatcaggtgaacctgcttatttagtatatacatcaggaacaacaggttatcca
aaaggagtattacactctcatagatcattagttggaagaaaaccagcaactgattattgg
tttgattttaaagaaaatgacagaatcatgcactctggaaaatttaactggacttatgta
ttaggatcagcacttatggatccattatttaatggtcatacagttattgcttatgaaggt
tctaatgatgcttctacttggattgatttaattaaaaaacaccaatgtacaatttttatt
ggagttccaacaatttatagacaaattattcaaaaaacagatttcactcttgatgattgt
ccatcattaagatattgtatgtctgctggtgaacatttatcagatgaaatgttaggatta
tggagagatagatttaaacaagatattttcgaagcaattggaatgtctgagtgttcttat
tatatttcacattcaaaatataatccaattagaccaggaagtgcaggattccctcaacca
ggacacatcgtaaaacttttagaccctgaaactttagaagaagttggagttgaagaagaa
ggtatgatttgtattggtgaagatgatccaggtttattcttagagtattggcaattagaa
gaagaaactgcaaaatcaagacatgatggatacttctttacaggagattatgcaagaaaa
gataaagatggatatatttggttcattggaagaaaagatgatatcatcaatacatttgga
tttagagtatctccacatgaaatcgaaagagttgtaaaaacaaatgatttagttgctgat
tgtgttgcttttggtttagatataggaaaagataaaactattgtagcaattgctgttgtt
ggttataaagaattaactaaagaacaagaagatgaagtattaaaatttgcacaagcgaac
cttgcaaaatataaggctccaaaagaaatttttacaatggctgattatccaagaactaaa
aatggaaaagttttaagaaaacaacttgtaaaacaattacatgatttatatcacgctcaa
gaaagtggtgaagaaattgttgagtataaagctagaagatctatgttatttataccttca
tataataaacaaaatgttcaaaaagcaaaaacagtattagctgatacagtgatttttgat
ttagaagctattttacaagaacaaagagaagttggaagagaaactttaagacaagtttac
aaagaagatggtgctaaatttggtgagtctgaaagagttttaagaattaataatcttgga
actgaagatcttaaaaaagatttagaacttgctcgtgaaattgaacttgatggtttatta
ttctctaaaattgattgtaaagaggatgttttagaagctgaaaaattaatcaatgaagta
aatcctaatttatctttaatgattatgattgaaactcctatgtctgttttaaatatccat
gaaatttgtgcagcatctactaaagtagaagttgtagttgtaggttctaataaacttgca
aatagacttcaaattgatattaaaaaaggttcaaaagcgatgtttaattacttatcgcaa
attgccctagcatcaaaagcttacggaaaaacagttatcgatggaccacattttgacgta
catgatgaatttgcttgtgaagattcaacaaaagatgcatttaatttaggatttgatggt
aaatcattgattcaccctgttcagattgaatatatcaatgatatctttactccaaaacaa
tctgaagttgaagattatgaaaaaatgattgctaaatatgaagaagcggcaagagaaggg
aaagaagtaattctacataatgatagattagtagattcttcaagaattaaatgggctaaa
aaaatgatcactttatatgaaacatataaagctttaggtcaaaacctatttaataaataa

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