KEGG   Allofrancisella frigidaquae: E3E15_01930
Entry
E3E15_01930       CDS       T06608                                 
Name
(GenBank) acyl-CoA dehydrogenase
  KO
K06445  acyl-CoA dehydrogenase [EC:1.3.99.-]
Organism
afri  Allofrancisella frigidaquae
Pathway
afri00071  Fatty acid degradation
afri01100  Metabolic pathways
afri01212  Fatty acid metabolism
Brite
KEGG Orthology (KO) [BR:afri00001]
 09100 Metabolism
  09103 Lipid metabolism
   00071 Fatty acid degradation
    E3E15_01930
SSDB
Motif
Pfam: ACDH_C Acyl-CoA_dh_N Acyl-CoA_dh_1 Acyl-CoA_dh_M Acyl-CoA_dh_2
Other DBs
NCBI-ProteinID: QIV94179
UniProt: A0A6M3HSS0
LinkDB
Position
complement(417725..419986)
AA seq 753 aa
MLNSLFNVIYKKARKSMPTISKTEQTALNAGDSWFEQDIFQGKPDFEKLHNLQKFSLSEE
EKSFLENETTQLCDMLDDWKINYVDKDLTKETWKFIREKGFFGLVTSKEYGGKGFSAAAH
SEIVMRIATKSVTAAITVMVPNSLGPGELLHHYGTDAQKKYYLPRLATGQEIPCFALTGP
TAGSDATSLPDKGVVCYGEHNGKKILGIRLENINKRYITLAPVATLVGLAFQLQDPEGLL
GGVGEEGITCALLPHDHKGLEIGKRGFPLGQAFMNGYIKAKEAFIPIDWIIGGQKMAGEG
WRMLVECLSIGRSISLPACGSANTLMSTVITSAYSNVREQFKVPIAHFDGVQEKLAEIGG
LAYLANATREFTVSAVDAGISPSVASAIAKYHLTEMGRTTINNAMDIHGGRAIIMGKNNY
LAIPYMATPIGITVEGANIMTRNLMIFGQGAMRCHPYIRAEAESLMNLDEELGQKEFSSL
MKKHICYTLGNSSRTLWYGLTGGITAKGYQSKFKHYYKYITHMSTAYAYINDLSLIVLGG
GLKRKERLSARLGDIMSYLYMACAVLKFYKDIGEPETDDAFVHWSLQYCLYQAQQAMLDL
FRNFPIKILALKMKFFVFPYGKKFKKPSDKLEAEICKELSTNSATRNWMKTRCYIPNDDQ
DPTGRVENAYLTILETMPIKHKIIQAIKADKLPKMTWTAVIEEAYEQKIITSDELNKVKE
MLAKVNNVIQTDEFDDYALGPKNAHPEWQKEKP
NT seq 2262 nt   +upstreamnt  +downstreamnt
atgttaaatagtttatttaatgtaatatacaaaaaggctagaaaatcaatgcctacaatt
tctaaaactgagcaaactgcattaaatgctggtgatagctggtttgaacaggatattttt
caaggtaaacctgattttgagaaactccataacttacagaaattcagcttatcagaagaa
gaaaaatctttcttagaaaatgaaaccacacaactctgtgatatgttagatgactggaaa
atcaattatgtagataaagatctaacaaaagaaacttggaaatttataagagaaaaaggt
ttttttggtctagttactagcaaagagtacggaggcaaaggcttttcagcagcagcacat
tcagaaatagtcatgagaattgcgacaaaaagtgttactgcagcaatcactgtcatggta
cctaattctctaggtcctggagagcttctgcatcattacggtacagatgcacaaaaaaaa
tattacttacctcgtttagctactggtcaagaaatcccttgctttgctctaacaggtcca
actgctggttccgatgcaacgtctttacctgataaaggagttgtttgctatggtgagcat
aatggaaaaaaaatcttaggtatccggctagaaaatattaataaacgttatatcacgtta
gcacctgttgcaactttagtaggtttagcatttcaattacaagatcctgaaggtttatta
ggcggtgttggggaagaaggtatcacgtgtgcactattaccccatgatcacaaaggatta
gaaattggtaagcgtggattcccattaggtcaagctttcatgaatggttatatcaaagct
aaagaagcttttattcctatagattggattattggtgggcagaaaatggctggagaaggt
tggcgaatgctagtggaatgtttatctattggcaggtcaatttctttacctgcatgtggc
tctgctaacacacttatgtcgactgtaatcacctctgcctatagtaatgtaagagaacag
tttaaagttcctattgcacactttgacggtgtccaagagaaattagccgagattggtggt
ttagcatatttggcaaatgcaacgcgtgaatttactgtatctgctgttgatgctggtatc
tcaccatcagttgcctcggctattgctaaatatcatttaactgaaatgggtcgtacaaca
attaataatgctatggatattcatggtggacgagcgattattatgggtaaaaataactat
ctagctattccatatatggcaacaccaataggcattactgttgagggtgcaaacattatg
acacgtaacttaatgatctttggtcaaggagctatgcgttgtcacccatacatacgtgct
gaagctgaaagcttgatgaatttagatgaagaacttggacaaaaagagtttagcagtctt
atgaaaaagcatatttgttatacacttggtaatagctctagaactctttggtatggttta
acaggaggaattactgctaaaggatatcaaagtaagtttaaacactattacaaatatatt
acccacatgagcacagcttatgcatatattaatgatttatcacttattgtattaggtggc
ggattaaaaagaaaagaaagattatccgcacgtctaggagatattatgagctatttatat
atggcttgtgctgtattaaaattttacaaagatataggtgaacctgaaactgatgatgct
tttgtacattggagtttacaatattgcttataccaagcacaacaagctatgctggattta
tttagaaattttcctattaagattttagctttaaaaatgaaattttttgtatttccatat
ggtaaaaaatttaaaaagccttctgataaacttgaagctgaaatctgtaaagaactttct
acaaatagtgcaactcgtaactggatgaaaactagatgttatatcccgaatgatgatcaa
gatccaactggcagagttgaaaatgcttatctgacaatactagaaactatgccaattaaa
cataagattatacaagctatcaaagcggataaattaccaaaaatgacttggacagcagtg
atcgaagaggcttatgagcaaaaaattatcacttctgatgagttaaataaagttaaagaa
atgttagctaaagttaataacgtcatccaaaccgatgagtttgacgattatgctttagga
cctaaaaacgcacatcctgaatggcagaaagaaaaaccttaa

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