Eurypyga helias (sunbittern): 104503253
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Entry
104503253 CDS
T08356
Symbol
ACOX3
Name
(RefSeq) peroxisomal acyl-coenzyme A oxidase 3
KO
K00232
acyl-CoA oxidase [EC:
1.3.3.6
]
Organism
ehs
Eurypyga helias (sunbittern)
Pathway
ehs00071
Fatty acid degradation
ehs00410
beta-Alanine metabolism
ehs00592
alpha-Linolenic acid metabolism
ehs00640
Propanoate metabolism
ehs01040
Biosynthesis of unsaturated fatty acids
ehs01100
Metabolic pathways
ehs01200
Carbon metabolism
ehs01212
Fatty acid metabolism
ehs03320
PPAR signaling pathway
ehs04146
Peroxisome
Module
ehs_M00087
beta-Oxidation
Brite
KEGG Orthology (KO) [BR:
ehs00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00640 Propanoate metabolism
104503253 (ACOX3)
09103 Lipid metabolism
00071 Fatty acid degradation
104503253 (ACOX3)
00592 alpha-Linolenic acid metabolism
104503253 (ACOX3)
01040 Biosynthesis of unsaturated fatty acids
104503253 (ACOX3)
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
104503253 (ACOX3)
09140 Cellular Processes
09141 Transport and catabolism
04146 Peroxisome
104503253 (ACOX3)
09150 Organismal Systems
09152 Endocrine system
03320 PPAR signaling pathway
104503253 (ACOX3)
Enzymes [BR:
ehs01000
]
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
104503253 (ACOX3)
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Motif
Pfam:
ACOX_C_alpha1
ACOX
Acyl-CoA_dh_1
DUF7469
Motif
Other DBs
NCBI-GeneID:
104503253
NCBI-ProteinID:
XP_010151224
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All DBs
Position
Unknown
AA seq
419 aa
AA seq
DB search
FAMFHSVRIPKESILNIAGDVTAEGNYSSSVKDVKERFSAALGSLSTGRILITAVSTTNL
KLALSIAIRFSAARRQFGPTDEEEIPVLEYQTQQWRLLPYLAAAYALDYFSKSLFENFIE
FYAGLLTKQRSQRQADLGREIHALSAASKPLSSWTAQQAAQECREACGGHGYLAMNRLGE
IRNDNDPNCTYEGDNNVLLQQTSNYLMSWINCIRDKVPFESPFGTINFLQDYHRIIDWKF
TASSVEDCMDSSVPLAAYKWLVCYLLRESDLKLSKEKQSGRGDFEAKNNCQVYYCRSLAI
AFIEQTVLQRYHDYTHDPNIPATLQTVLKNLSALYGLWALSRHLAVLYQGGYASGEQAGR
FIQNAILELCYRLKDDAVALVDVFAPPDFILNSPIGKASGEVRKPILKCVSLIIKKHIA
NT seq
1259 nt
NT seq
+upstream
nt +downstream
nt
atttgccatgttccacagtgtcaggatacctaaagaaagcatcctgaatatagctggaga
tgtcacagctgaggggaactactcaagttctgtcaaggatgttaaagagcgttttagtgc
agctctgggatccttgtccactggcagaattctgatcacggcagtttccacaaccaattt
aaagcttgccttatcgatagccattcgcttctcagcagctcgacgtcagtttggaccaac
tgatgaagaagaaatacccgtccttgaataccaaacacagcaatggcgtcttcttcctta
tctggctgccgcatatgccttagattatttctccaaatccctgtttgagaacttcataga
attttatgcaggcttattgacaaagcaaaggagtcagagacaggctgatttgggacgtga
gattcacgccttatctgctgccagcaaaccactgtcttcttggactgctcagcaggcagc
ccaggagtgtcgagaagcttgtggaggacacggttaccttgccatgaatcgtctgggtga
aatccgaaatgacaatgatccaaactgcacatatgagggagataacaacgtcctgcttca
gcaaaccagcaactacttaatgagctggataaattgcataagagataaagtgccttttga
atctccttttggaacaataaacttcttgcaagactaccatcgtatcatagactggaaatt
tacagccagtagtgttgaagattgcatggactcctcagttcctttagcagcatataaatg
gctggtttgctacctgctccgagaaagtgacctaaagctgagcaaggagaagcagtctgg
gcgaggtgattttgaggcaaaaaacaactgtcaggtgtactactgccgatcattagccat
tgcttttattgaacaaacagtcttacagagatatcatgactacactcatgatcccaacat
tccagctactctgcagacagtgcttaagaatctcagtgctctgtatggactctgggcttt
aagtagacacctggctgtgctctaccaaggtggctatgcttcaggtgaacaagctggtag
atttattcagaatgctattctggagctctgctacaggttaaaagatgatgcagttgccct
ggtcgatgtctttgctcctcctgacttcattctcaactctcccattggtaaagctagtgg
agaggtaagaaaacccattttaaaatgtgtaagtttaatcattaagaagcatattgcct
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