KEGG   Symphalangus syndactylus (siamang): 129462270
Entry
129462270         CDS       T10134                                 
Symbol
ACOX1
Name
(RefSeq) peroxisomal acyl-coenzyme A oxidase 1 isoform X1
  KO
K00232  acyl-CoA oxidase [EC:1.3.3.6]
Organism
ssyn  Symphalangus syndactylus (siamang)
Pathway
ssyn00071  Fatty acid degradation
ssyn00410  beta-Alanine metabolism
ssyn00592  alpha-Linolenic acid metabolism
ssyn00640  Propanoate metabolism
ssyn01040  Biosynthesis of unsaturated fatty acids
ssyn01100  Metabolic pathways
ssyn01200  Carbon metabolism
ssyn01212  Fatty acid metabolism
ssyn03320  PPAR signaling pathway
ssyn04024  cAMP signaling pathway
ssyn04146  Peroxisome
ssyn04936  Alcoholic liver disease
Module
ssyn_M00087  beta-Oxidation
ssyn_M00861  beta-Oxidation, peroxisome, VLCFA
Brite
KEGG Orthology (KO) [BR:ssyn00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00640 Propanoate metabolism
    129462270 (ACOX1)
  09103 Lipid metabolism
   00071 Fatty acid degradation
    129462270 (ACOX1)
   00592 alpha-Linolenic acid metabolism
    129462270 (ACOX1)
   01040 Biosynthesis of unsaturated fatty acids
    129462270 (ACOX1)
  09106 Metabolism of other amino acids
   00410 beta-Alanine metabolism
    129462270 (ACOX1)
 09130 Environmental Information Processing
  09132 Signal transduction
   04024 cAMP signaling pathway
    129462270 (ACOX1)
 09140 Cellular Processes
  09141 Transport and catabolism
   04146 Peroxisome
    129462270 (ACOX1)
 09150 Organismal Systems
  09152 Endocrine system
   03320 PPAR signaling pathway
    129462270 (ACOX1)
 09160 Human Diseases
  09167 Endocrine and metabolic disease
   04936 Alcoholic liver disease
    129462270 (ACOX1)
Enzymes [BR:ssyn01000]
 1. Oxidoreductases
  1.3  Acting on the CH-CH group of donors
   1.3.3  With oxygen as acceptor
    1.3.3.6  acyl-CoA oxidase
     129462270 (ACOX1)
SSDB
Motif
Pfam: ACOX_C_alpha1 ACOX Acyl-CoA_ox_N Acyl-CoA_dh_M Acyl-CoA_dh_1
Other DBs
NCBI-GeneID: 129462270
NCBI-ProteinID: XP_055098114
LinkDB
Position
14:10320506..10358636
AA seq 660 aa
MNPDLRRERDSASFNPELLTHILDGSPEKTRRRREIENMILNDPDFQHEDLNFLTRSQRY
EVAVRKSAIMVKKMREFGIADPDEIMWFKNFVHRGRPEPLDLHLGMFLPTLLHQATAEQQ
ERFFMPAWNLEIIGTYAQTEMGHGTHLRGLETTATYDPETQEFILNSPTVTSIKWWPGGL
GKTSNHAIVLAQLITKGKCYGLHAFIVPIREIGTHKPLPGITVGDIGPKFGYDEIDNGYL
KMDNYRIPRENMLMKYAQVKPDGTYVKPLSNKLTYGTMVFVRSFLVGEAARALSKACTIA
IRYSAVRHQSEIKPGEPEPQILDFQTQQYKLFPLLATAYAFQFVGAYMKETYHRINEGIG
QGDLSELPELHALTAGLKAFTSWTANTGIEACRMACGGHGYSHCSGLPNIYVNFTPSCTF
EGENSVMMLQTARFLMKSYDQVHSGKLVCGMVSYLNDLPSQRIQPQQVAVWPTMVDINSP
ESLTEAYKLRAARLVEIAAKNLQKEVIHRKSKEVAWNLTSVDLVRASEAHCHYVVVKLFS
EKLLKTQDKAIQAVLRNLCLLYSLYGISQNAGDFLQGSIMTESQITQVNQRVKELLTLIR
SDAVALVDAFDFQDVTLGSVLGRYDGNVYENLFEWAKNSPLNKAEVHESYKHLKSLQSKL
NT seq 1983 nt   +upstreamnt  +downstreamnt
atgaacccggacctgcgcagggagcgggattccgccagcttcaacccggagctgcttaca
cacatcctggacggcagccccgagaaaacccggcgccgccgagagatcgagaacatgatc
ctgaacgacccagacttccagcatgaggacttgaacttcctcacccgcagccagcgttat
gaggtggctgtcaggaaaagtgccatcatggtgaagaagatgagggaatttggcatcgca
gaccctgatgaaattatgtggtttaaaaattttgtgcaccgagggcggcctgaacctctg
gatcttcacttgggcatgttcctgcccaccttgcttcaccaggcaactgcggagcagcag
gagcgcttcttcatgcccgcctggaacttggagatcattggcacttatgcccagacagag
atgggtcatggaactcaccttcgaggcttggaaaccacagccacatatgaccctgaaacc
caggagttcattctcaacagtcctactgtgacctccattaaatggtggcctggtgggctt
ggaaagacttcaaatcatgcaatagttcttgcccagctcatcactaaggggaaatgctat
ggattacatgcctttatcgtacctattcgtgaaatcgggacccataagcctttgccagga
attaccgttggtgacatcggccccaaatttggttatgatgagatagacaatggctacctc
aaaatggacaactatcgtattcccagagaaaacatgctgatgaagtatgcccaggtgaag
cctgatggcacgtacgtgaaaccgctgagtaacaagctgacttacgggactatggtgttt
gtcaggtccttccttgtgggagaagctgctcgggctctgtctaaggcgtgcaccattgcc
atccgatacagcgctgtgaggcaccagtctgaaatcaagccaggtgaaccagaaccacag
attttggattttcaaacccagcagtataaactctttccactcctggccactgcctatgcc
ttccagtttgtgggcgcatacatgaaggagacctatcaccggattaacgaaggcattggt
caaggggacctgagtgaactgcctgagcttcatgccctcaccgccggacttaaggctttc
acctcctggactgcaaacactggcatcgaagcatgtcggatggcttgtggtgggcatggc
tattctcattgcagtggtcttccaaatatttatgtcaatttcaccccaagctgtaccttt
gagggagaaaacagtgtcatgatgctccagacggctaggttcttgatgaaaagttatgac
caggtgcactcaggaaagttggtgtgtggcatggtgtcctatttgaatgacctgcccagt
caacgcatccagccacagcaggtagcagtctggccaaccatggtggatatcaacagccct
gaaagcctaaccgaagcatataaactccgtgcagccagattagtagaaattgctgcaaaa
aaccttcaaaaagaagtaattcacagaaaaagcaaggaggtagcgtggaacctaacttct
gttgaccttgttcgagcaagtgaggcacattgccactatgtggtagttaagctcttttca
gaaaaactcctcaaaactcaagataaagccattcaagctgtcttaaggaatttatgtctg
ctgtattctttgtatggaatcagtcagaatgcgggggatttccttcaggggagcataatg
acagagtctcagattacgcaagtaaaccagcgtgtaaaggagttactcactctgattcgc
tcagatgctgttgctttggttgatgcatttgattttcaggatgtgacacttggctctgtg
cttggccgctatgatggaaatgtgtatgaaaacttgtttgagtgggctaagaactcccca
ctgaacaaagcagaggtccacgaatcttacaagcacctgaagtcactgcagtccaagctc
tga

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