Ailuropoda melanoleuca (giant panda): 100465291
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Entry
100465291 CDS
T01329
Symbol
UGT8
Name
(RefSeq) 2-hydroxyacylsphingosine 1-beta-galactosyltransferase
KO
K04628
ceramide galactosyltransferase [EC:
2.4.1.47
]
Organism
aml
Ailuropoda melanoleuca (giant panda)
Pathway
aml00565
Ether lipid metabolism
aml00600
Sphingolipid metabolism
aml01100
Metabolic pathways
Module
aml_M00067
Sulfoglycolipids biosynthesis, ceramide/1-alkyl-2-acylglycerol => sulfatide/seminolipid
Brite
KEGG Orthology (KO) [BR:
aml00001
]
09100 Metabolism
09103 Lipid metabolism
00565 Ether lipid metabolism
100465291 (UGT8)
00600 Sphingolipid metabolism
100465291 (UGT8)
09180 Brite Hierarchies
09181 Protein families: metabolism
01003 Glycosyltransferases [BR:
aml01003
]
100465291 (UGT8)
Enzymes [BR:
aml01000
]
2. Transferases
2.4 Glycosyltransferases
2.4.1 Hexosyltransferases
2.4.1.47 N-acylsphingosine galactosyltransferase
100465291 (UGT8)
Glycosyltransferases [BR:
aml01003
]
Glycolipid biosynthesis
Glycosphingolipid
100465291 (UGT8)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
UDPGT
EryCIII-like_C
Glyco_tran_28_C
Imm39
Glyco_transf_28
Motif
Other DBs
NCBI-GeneID:
100465291
NCBI-ProteinID:
XP_011235706
Ensembl:
ENSAMEG00000014573
UniProt:
D2I2H6
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Position
11:complement(17984047..18066024)
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AA seq
541 aa
AA seq
DB search
MKSYTPYFMLLWSAVGIAKAAKIIIVPPIMFESHMYIFKTLASALHERGHRTVFLLSEGR
DIAPSNRYSLQRYPGIFNSTTSDAFLQSKMRNIFSGRLTAMELFDILDHYTKNCDMVVGN
RALIQGLKKEKFDLLLVDPNDMCGFVIAHLLGVKYAVFSTGLWYPAEVGAPAPLAYVPEF
NSLLTDHMNLLQRMKNTGVYLISRLGVSFLVLPKYERIMQKYNLLPEKSMYDLVHGSSLW
MLCTDVALEFPRPTLPNVVYVGGILTKPAGPLPEDLQRWVNGANEHGFVLVSFGAGVKYL
SEDIANKLAGALGRLPQKVIWRFSGTKPKNLGNNTKLIEWLPQNDLLGHSNIKAFLSHGG
LNSIFETMYHGVPVVGIPLFGDHYDTMTRVQAKGMGILLEWKTVTEGELYEALVEVINNP
SYRQRAQKLSEIHKDQPGHPVNRTVYWIDYILRHNGAHHLRAAVHQISFCQYFLLDIAFV
LLLGAALFYFFLSWVTKFIYRKIKSLWSRNKHSTVNGHYHNGILNGKYKRNGHIKHEKKV
K
NT seq
1626 nt
NT seq
+upstream
nt +downstream
nt
atgaagtcttacactccgtatttcatgctcctgtggagtgctgttgggatagcaaaggct
gccaaaatcatcatcgtgccgccaattatgtttgaaagccatatgtacattttcaagacg
ctagcctcagccttgcacgagagaggccaccgcacggtgtttcttctctccgaaggcaga
gacatcgcgccatctaatcgttacagcctccagcgctacccagggatttttaacagtacc
acctcggatgcgttcctgcagtccaaaatgcggaatattttctctgggagattgacagca
atggaactgttcgacatactggatcactacaccaagaactgtgacatggtggttggcaac
cgggccctgattcagggtctgaagaaggagaagtttgacctgctgctggtggaccctaat
gacatgtgtggatttgtgatagctcatcttttaggggttaaatatgctgtattttcaact
ggcctttggtatcccgcggaagtgggtgctcccgccccgttagcttacgtcccagagttt
aactcactcctcacagaccacatgaacttgctgcaaagaatgaaaaataccggtgtttac
ctcatttccagattgggggtcagctttctggttcttcccaaatacgaaaggataatgcag
aagtacaacctgctgccggagaagtccatgtacgacttggtccatgggtccagtctgtgg
atgctgtgtacagacgtggctctggagttcccgagacccaccctgcctaacgttgtgtat
gtgggaggaatcctcaccaaaccggccggcccgctaccagaagatctccagaggtgggta
aatggtgctaacgaacatggctttgtcctggtatctttcggagctggtgtcaagtatctg
tcagaagacattgctaacaaactggctggagctctggggagattgccccaaaaagtgatt
tggaggttttctggaaccaaaccaaagaatctaggaaacaacactaagctcatagaatgg
ttaccacaaaatgacctgcttgggcattcaaatattaaagccttcctgagccatggtggt
ttgaatagtatttttgaaactatgtatcacggtgtacctgtagtgggaatcccactcttt
ggagaccactatgacactatgactcgggtccaggcaaaaggcatggggatattgctagaa
tggaagacagtgacggaaggagagctatatgaagcactggtggaagttatcaataatccc
agctaccgtcagagggcccagaagctttcagaaatccacaaggatcaacctggtcaccct
gtcaatcggactgtctattggatagattacattcttcgtcacaacggagcccatcaccta
cgtgccgcggtccatcaaatctctttctgtcagtactttttactggatattgcctttgtg
cttttgcttggtgctgccttgttctacttcttcttgtcctgggtgacaaaatttatctac
agaaaaatcaaaagcttgtggtctagaaataagcatagcacggttaatggacattaccat
aatggaatcctcaatggcaagtacaaaagaaatggccatattaaacatgaaaagaaggtg
aaatga
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