KEGG   Acinetobacter piscicola: ACDW34_09955
Entry
ACDW34_09955      CDS       T11504                                 
Name
(GenBank) AMP-binding protein
  KO
K01895  acetyl-CoA synthetase [EC:6.2.1.1]
Organism
apis  Acinetobacter piscicola
Pathway
apis00010  Glycolysis / Gluconeogenesis
apis00620  Pyruvate metabolism
apis00630  Glyoxylate and dicarboxylate metabolism
apis00640  Propanoate metabolism
apis00680  Methane metabolism
apis00720  Other carbon fixation pathways
apis01100  Metabolic pathways
apis01110  Biosynthesis of secondary metabolites
apis01120  Microbial metabolism in diverse environments
apis01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:apis00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00010 Glycolysis / Gluconeogenesis
    ACDW34_09955
   00620 Pyruvate metabolism
    ACDW34_09955
   00630 Glyoxylate and dicarboxylate metabolism
    ACDW34_09955
   00640 Propanoate metabolism
    ACDW34_09955
  09102 Energy metabolism
   00720 Other carbon fixation pathways
    ACDW34_09955
   00680 Methane metabolism
    ACDW34_09955
Enzymes [BR:apis01000]
 6. Ligases
  6.2  Forming carbon-sulfur bonds
   6.2.1  Acid-thiol ligases
    6.2.1.1  acetate---CoA ligase
     ACDW34_09955
Lipid biosynthesis proteins [BR:apis01004]
 Acyl-CoA ligase
  Short/medium chain acyl-CoA ligase
   ACDW34_09955
SSDB
Other DBs
NCBI-ProteinID: XEZ53938
LinkDB
Position
complement(2014824..2016482)
AA seq 552 aa
MLNYQDVAAAFDLNQAAQEMLSGSLDQVNACYECCDRHAEADANKVALYWQGKDGRKEQY
TFSQLKTWSSQFANFLKSQGVQKGDRVSGLLPRTPELLVVILGTWRIGAVYQPLFTAFGP
KAIEHRVQLAQSKLVISDVGNRSKLGEIAHCPQIVTVADRDGHGVEQGDLNFWDMVNAQS
DQCELVMQTIQDPFLLMFTSGTTGPAKPLEVPLKALIAFGNYMKDAIGLKAGDSFWNIAD
PGWAYGLYYGITGPLLLGHATLFYEGGFSIDSLCQIVDDYQVTNLAGAPTAYRMMMAADP
QQMAKLKGKFRVVSSAGEPLNPEVFRWFKQVLDAPIFDHYGQTETGMVVCNHHALSHDVR
AGVAGYASPGYRVAVVDEQGNELPTDTPGILAVDIEQSPMMWFGGYKESRKSPFLKHYYL
TGDTAELHADGSMSFVGRSDDVITTSGYRIGPFDVESALLEHDAVIEAAVVGVPDPERTE
IVKAFVILAEGKTACDELAEQLGQFVKKRLSAHAYPRQVEFVQELPKTPSGKIQRFLLRN
QEIAKQTAKQAG
NT seq 1659 nt   +upstreamnt  +downstreamnt
atgttgaattatcaagatgtagcggcagcatttgatttaaatcaagctgctcaagaaatg
ctttcgggttcattagatcaagttaatgcttgctatgaatgctgtgaccgtcatgcagaa
gcagatgcgaataaagtcgcattatattggcaaggaaaagatgggcgcaaagaacaatat
acctttagccaattgaaaacatggtcaagccaatttgccaattttttaaaatcgcaaggt
gtacaaaaaggtgatcgagtttctggattattaccccgaacacctgaacttttagtggtg
attttagggacttggcgcattggggcagtgtatcaaccactatttactgcttttggaccg
aaggcgattgagcatcgtgtgcagttagcacaaagtaaattggtaatttccgatgtggga
aatcgtagcaaactgggtgaaattgctcattgcccacaaatcgtgacagtggcagatcgt
gacggtcatggggttgaacaaggcgatttaaacttttgggatatggtcaatgcacagtct
gatcaatgtgaattggtcatgcaaacgatccaagacccatttttactcatgtttacttcg
ggtacgacaggtcctgcaaaaccgttagaagtaccattaaaagctttaatcgcttttggc
aactatatgaaagatgccatcggtttaaaagcaggtgattcattttggaatattgctgac
cccggttgggcgtatggtttgtactatggcatcacaggaccattactgttaggtcatgcg
actttattctacgaaggtggttttagtatcgacagcttgtgtcagattgttgatgattac
caagtgaccaatttggcaggtgcgccaacagcctaccgtatgatgatggcggctgatcct
cagcaaatggcaaaactcaaaggtaaattccgcgtggtcagtagcgcaggtgagccatta
aatccagaagtgtttagatggtttaaacaagttctagatgccccaatttttgatcactat
gggcaaactgaaacaggcatggtggtctgtaatcatcatgcactcagtcatgatgttcga
gcaggtgtcgcaggctatgcaagtccagggtatcgggtggcggttgtagatgagcaaggc
aatgagctgccgacagatacaccgggaatccttgcagtggatatcgaacaatccccaatg
atgtggtttggtggctataaagaaagccgtaagtctccatttttaaagcattattattta
actggagacaccgcagaattacatgcagatggcagtatgagttttgttggacgtagtgat
gatgtcattacaacgtcaggctatcgtattggtccttttgatgtagaaagtgctttactt
gagcatgatgcggtaattgaagctgctgtggtgggtgtgcctgatcctgagcgaactgaa
attgtgaaagctttcgtgattttggcagaaggcaaaacagcatgtgatgaacttgcagaa
caacttggacaatttgtcaaaaagcgcttatctgcacatgcttatccacgccaagtcgaa
tttgttcaggaattaccaaaaactccaagcggcaaaattcaacgctttttactgcgtaat
caagagattgccaaacaaacagcaaagcaagcaggttaa

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