KEGG   Alligator sinensis (Chinese alligator): 102384745
Entry
102384745         CDS       T02922                                 
Symbol
ACSL6
Name
(RefSeq) long-chain-fatty-acid--CoA ligase 6
  KO
K01897  long-chain-fatty-acid---CoA ligase [EC:6.2.1.3]
Organism
asn  Alligator sinensis (Chinese alligator)
Pathway
asn00061  Fatty acid biosynthesis
asn00071  Fatty acid degradation
asn01100  Metabolic pathways
asn01212  Fatty acid metabolism
asn03320  PPAR signaling pathway
asn04146  Peroxisome
asn04216  Ferroptosis
asn04920  Adipocytokine signaling pathway
Module
asn_M00086  beta-Oxidation, acyl-CoA synthesis
Brite
KEGG Orthology (KO) [BR:asn00001]
 09100 Metabolism
  09103 Lipid metabolism
   00061 Fatty acid biosynthesis
    102384745 (ACSL6)
   00071 Fatty acid degradation
    102384745 (ACSL6)
 09140 Cellular Processes
  09141 Transport and catabolism
   04146 Peroxisome
    102384745 (ACSL6)
  09143 Cell growth and death
   04216 Ferroptosis
    102384745 (ACSL6)
 09150 Organismal Systems
  09152 Endocrine system
   04920 Adipocytokine signaling pathway
    102384745 (ACSL6)
   03320 PPAR signaling pathway
    102384745 (ACSL6)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01004 Lipid biosynthesis proteins [BR:asn01004]
    102384745 (ACSL6)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:asn04147]
    102384745 (ACSL6)
Enzymes [BR:asn01000]
 6. Ligases
  6.2  Forming carbon-sulfur bonds
   6.2.1  Acid-thiol ligases
    6.2.1.3  long-chain-fatty-acid---CoA ligase
     102384745 (ACSL6)
Lipid biosynthesis proteins [BR:asn01004]
 Acyl-CoA ligase
  Long/very long chain acyl-CoA ligase
   102384745 (ACSL6)
Exosome [BR:asn04147]
 Exosomal proteins
  Exosomal proteins of breast milk
   102384745 (ACSL6)
  Exosomal proteins of breast cancer cells
   102384745 (ACSL6)
SSDB
Motif
Pfam: AMP-binding AMP-binding_C
Other DBs
NCBI-GeneID: 102384745
NCBI-ProteinID: XP_006017279
UniProt: A0A1U7RC39
LinkDB
Position
Unknown
AA seq 719 aa
MAESIFKSPHGPEFAISIIERMQAQEILRSLRLPEFDDFSQFFRNLPATALVGIGAFAAV
VAYWFASRPKAVKPPCDLLLQSEEVEGLDGARRSVIGDCPQLLTHYYDDARTMYEVFRRG
FNISENGPCLGFRKPKQPYQWLSYKEVAERAEALGSGLLQQGCKASTSQFIGVFAQNRPE
WIISELACYTYSMVVVPLYDTLGPGAIRYIINTADISTVICDKPDKVRVLLDHVEKRETP
GLKSIILMDPFEKDLKERGKKCGVRIQSMQEVEDCGRESRHVPVPPRPEDLSIVCFTSGT
TGNPKGAMLTHGNVVADFSGFLKVTEKVIFPRQDDVLISFLPLAHMFERVIQSVVYCHGG
RIGFFQGDIRLLSDDMKALHPTIFPVVPRLLNRMYDKIFSQADTPLKRWLLEFAAKRKKA
EVRSGIIRNDSLWDKIFFNKIQASLGGCVRMIVTGAAPASPTVLGFLRAALGCQVYEGYG
QTECTAGCTFTTPGDWTSGHVGAPLPCNLIKLMDVEELNYFASKSEGEICVKGPNVFKGY
LKDEERTTEALDKEGWLHTGDIGKWLPNGTLKIIDRKKHIFKLAQGEYIAPEKIENIYIR
SDPVAQIYVHGDSLQAFLVGIVVPDSEVMPGWAKKRGFEGTYAELCKNMELKKALMDDMV
RLGKESGLHSFEQVKAIYIHSDMFSVQNGLLTPTLKAKRPELRDYFKKQIQELYSSISI
NT seq 2160 nt   +upstreamnt  +downstreamnt
atggctgagagcatcttcaaatccccacatggaccagagttcgccatttcaatcattgaa
aggatgcaagcacaggaaattctgaggagtctgcggctgcctgaatttgatgacttcagc
caattttttcgcaacttgccggccaccgcgttagtgggcattggtgcctttgcagctgtt
gtcgcatactggtttgctagccggccgaaggctgtaaagcccccatgtgacctgctgctg
cagtcagaagaagttgagggcctggatggagctcggcggtctgtgataggggactgccca
caactgctaactcactactacgacgatgcaaggacaatgtatgaagtatttagacgtgga
ttcaacatatctgaaaatggtccctgcctaggattcaggaaacccaagcagccttaccaa
tggttgtcgtataaggaggtcgctgaaagagcagaagctttgggatcaggattacttcaa
cagggatgcaaggcatcaacaagccagtttatcggagtctttgcacaaaaccgtccagag
tggatcatttctgaactggcttgctacacctattctatggtggtggtccccctatatgat
acattagggcctggagccattcgttacattatcaatacagctgatatttccacagtaatt
tgtgataaaccagataaagtcagagtactactggatcatgtggagaaaagagaaacaccg
ggcttgaagtctatcattctgatggacccttttgagaaggacctaaaagaaagagggaaa
aaatgcggagtgcgcatccagtccatgcaggaagtggaggattgtggccgtgagagtcgg
catgtccctgtgcctcctcgaccagaagatctatcaattgtctgttttactagtggcact
acagggaaccccaaaggtgctatgctgactcacgggaatgtggtggctgatttttcaggc
tttttgaaagtgacagagaaagtgatctttccgagacaggacgatgtgctcatctccttc
ctgcctctggctcacatgtttgaaagagttatacagtctgtagtatattgccatgggggg
cgaattggattctttcaaggagacatccgtctcttatctgatgatatgaaagcattgcat
ccgaccatctttcctgtcgtaccaagactattaaatagaatgtatgataagatctttagc
caagcggataccccattaaagcgctggcttctggaatttgctgctaaacgtaaaaaggca
gaagttcgaagtggaatcattagaaacgacagtttgtgggacaaaattttcttcaataaa
atacaggcgagccttggtgggtgtgttaggatgattgtaactggagctgcccctgcttct
cctactgttctgggcttccttcgggcagcacttggatgtcaggtttatgaaggctatggt
caaacagagtgcactgctgggtgtacctttactactccaggtgactggacatcaggtcac
gtaggagcccctttgccttgcaacttaatcaaactgatggatgtggaagagctgaattat
tttgcttccaaaagtgaaggagagatttgtgtgaaaggacccaatgttttcaagggttat
cttaaagacgaagagaggacaactgaagcgctggacaaagaaggctggcttcatactgga
gacattgggaagtggttacctaatgggactcttaaaattattgatcgaaagaagcatata
tttaagcttgctcagggagaatacatagcacccgaaaagattgagaatatctacatccgc
agtgatcctgttgcccagatatatgttcatggagacagcttgcaggccttcttggtggga
attgtggtacctgattctgaagtcatgccaggctgggcaaaaaaaagagggtttgaagga
acatatgcagagctctgtaaaaatatggaactgaagaaagcactaatggatgatatggtg
cggttaggaaaggagagtggacttcattcttttgaacaggtcaaagccatttacatccac
tccgatatgttctcagtacaaaatggcttgttgacaccaacattaaaggctaagagacca
gagctgagagattacttcaaaaagcaaatacaagagctttattcaagcatctccatttga

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