Monodelphis domestica (gray short-tailed opossum): 100019995
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Entry
100019995 CDS
T01031
Symbol
ACOX3
Name
(RefSeq) acyl-CoA oxidase 3, pristanoyl
KO
K00232
acyl-CoA oxidase [EC:
1.3.3.6
]
Organism
mdo
Monodelphis domestica (gray short-tailed opossum)
Pathway
mdo00071
Fatty acid degradation
mdo00410
beta-Alanine metabolism
mdo00592
alpha-Linolenic acid metabolism
mdo00640
Propanoate metabolism
mdo01040
Biosynthesis of unsaturated fatty acids
mdo01100
Metabolic pathways
mdo01200
Carbon metabolism
mdo01212
Fatty acid metabolism
mdo03320
PPAR signaling pathway
mdo04024
cAMP signaling pathway
mdo04146
Peroxisome
mdo04936
Alcoholic liver disease
Module
mdo_M00087
beta-Oxidation
mdo_M00861
beta-Oxidation, peroxisome, VLCFA
Brite
KEGG Orthology (KO) [BR:
mdo00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00640 Propanoate metabolism
100019995 (ACOX3)
09103 Lipid metabolism
00071 Fatty acid degradation
100019995 (ACOX3)
00592 alpha-Linolenic acid metabolism
100019995 (ACOX3)
01040 Biosynthesis of unsaturated fatty acids
100019995 (ACOX3)
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
100019995 (ACOX3)
09130 Environmental Information Processing
09132 Signal transduction
04024 cAMP signaling pathway
100019995 (ACOX3)
09140 Cellular Processes
09141 Transport and catabolism
04146 Peroxisome
100019995 (ACOX3)
09150 Organismal Systems
09152 Endocrine system
03320 PPAR signaling pathway
100019995 (ACOX3)
09160 Human Diseases
09167 Endocrine and metabolic disease
04936 Alcoholic liver disease
100019995 (ACOX3)
Enzymes [BR:
mdo01000
]
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
100019995 (ACOX3)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
ACOX
ACOX_C_alpha1
Acyl-CoA_dh_M
Acyl-CoA_dh_1
Acyl-CoA_ox_N
DUF7469
Motif
Other DBs
NCBI-GeneID:
100019995
NCBI-ProteinID:
XP_001372658
Ensembl:
ENSMODG00000003150
UniProt:
F6WE42
LinkDB
All DBs
Position
5:complement(227362929..227455231)
Genome browser
AA seq
706 aa
AA seq
DB search
MAPASKGNGHNQSSQDDLLPDLPKGPLCMYRAKSSFNWKELLLFLEGEDMLIFKKRIFSA
FENDPLFAHHPGEELPIQKYRELNFLRCKRLFEYDFLNMQEMVKNPLKISMLINCLGMYD
WSLSAKYFLNTYVFASTIQNSGSQRHMHFIQKTLNMEIFGCFALTEVSHGSNTKAIRTTA
QYDPTTQEFIINSPDFEASKFWIGNMGKNATHAVVYAQLYTQGGQCHGLHSFVVQIRDPK
TLLPMPGVMVGDIGRKLGQNGLDNGFTMFHNVRIPRENLLNRTGDVTPEGVYSTSFKDVR
QRFGASLGTLSTGRVSIIGMSVVNLKLALSIAIRFSATRHQFGPNDDEEIPVLEYQMQQW
RLIPYLAATYVLDHFSKTLFMDLVELQLGLLQNDKSIRQAELGREIHILASAGKPLASWT
AQQGAQECREACGGHGYLAMNRLGDIRNDNDPNCTYEGDNNVLLQQTSNYLLNCITDRHQ
DKVRIESPLESVNFLEDFKDILGQKFVISRVEDCMDSSVSLAAYKWLVCYLLRESYQKLN
QERKSGSDDFEARNNCQAYYCHSLALVFIEHTVLQRYHKYTHHASMPTSLQPVLKRLGAL
YGLWSLSRHMAVLYQGGYFSGEQAGKMIKNAILDLCAKLKDDAVALVDVIAPPDFILNSP
IGKANGELYKNLWATVLQGSKVLERPSWWREFSTYKPTIGSLKSKL
NT seq
2121 nt
NT seq
+upstream
nt +downstream
nt
atggcacctgcttctaaaggaaatggtcataatcaaagctctcaggatgatttgttgcca
gatcttcccaagggaccattatgtatgtatagagccaaatcatccttcaattggaaggaa
ctcttgttattcttagaaggagaagacatgctaattttcaagaaaagaatcttctcagcc
tttgaaaatgatcctctctttgctcatcatcctggagaagaattgcctattcagaagtat
cgtgagctaaactttctacgctgtaaaagactttttgaatatgactttcttaatatgcaa
gaaatggtgaagaatccactgaaaatttctatgctgattaattgcctagggatgtatgat
tggtctttatctgccaaatattttttaaatacatatgtttttgcttctactattcagaat
tctgggtctcaaagacatatgcattttattcagaaaaccttaaatatggagatttttgga
tgttttgctctgactgaagtaagtcatgggagtaataccaaggctattcgaacaactgcc
caatatgatcccaccacgcaggagttcatcatcaattctcctgattttgaagcttccaaa
ttttggattggtaatatgggcaagaatgccactcatgcagttgtatatgcccagctatat
acccaaggaggccagtgccatggattacattcctttgttgtacagatacgagatccaaag
acacttcttccaatgccaggagtcatggttggtgacataggaaggaaacttggacagaat
ggtttagacaatggattcactatgtttcataatgttagaattccccgggaaaatctgcta
aaccgaacaggtgacgtcaccccagagggagtctacagtacttcctttaaggatgtccga
cagcgttttggtgcttcactaggtactctgtcaactggtagagtttccattataggaatg
tctgtggtgaatttgaaactagctctatcaatagcaattcgtttctctgcaactcgccat
cagtttggaccaaatgatgatgaggaaattccagtccttgaatatcaaatgcagcaatgg
cgcctgattccttacttggcagctacatatgttttagaccacttctcaaaaactttgttc
atggacttggtagaacttcagctaggccttttacaaaatgataaaagtataaggcaggct
gaacttggacgtgaaattcatatattggcatctgctggcaaacctctagcttcctggacg
gctcaacaaggagctcaggaatgtcgagaagcttgtggaggacatggctatttggctatg
aatcgtttgggcgatattagaaatgacaatgatccaaactgtacttatgaaggagacaat
aatgtcctgcttcaacagactagcaactatttactgaactgcattacagacagacatcaa
gataaagttcgtattgaaagtccactggaatctgtaaattttcttgaagattttaaagat
attcttggccagaaatttgtgatatctcgagttgaagactgcatggattcttcagtttcc
ctggcagcatacaagtggttggtttgttacctactacgagagagttatcaaaaattaaat
caggaaagaaaatctggaagtgatgattttgaagcaagaaacaactgccaggcatactac
tgtcattccctcgctcttgtcttcattgagcatacagttttacagaggtatcataagtat
acacaccatgccagcatgccaacttctcttcagcctgtcctgaaacgtcttggtgctttg
tatggactctggtctctaagtcggcatatggcagttctctatcaaggtggatatttttct
ggtgaacaagcaggtaaaatgataaagaatgctattttggacctgtgtgcaaagctgaaa
gatgatgcagttgctctggtagatgtcatcgctcctccagacttcatcctgaactcacca
attggcaaggcaaatggcgagctatataaaaacctctgggccactgtccttcagggaagc
aaagtcctagaaaggccatcatggtggagagaattttctacctataaacccaccatagga
agtttaaaatcgaaactctag
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