KEGG   Ailuropoda melanoleuca (giant panda): 100469290Help
Entry
100469290         CDS       T01329                                 

Definition
UDP-glucuronosyltransferase 2A3-like
Orthology
K00699  
glucuronosyltransferase [EC:2.4.1.17]
Organism
aml  Ailuropoda melanoleuca (giant panda)
Pathway
Pentose and glucuronate interconversions
Ascorbate and aldarate metabolism
Steroid hormone biosynthesis
Starch and sucrose metabolism
Retinol metabolism
Porphyrin and chlorophyll metabolism
Metabolism of xenobiotics by cytochrome P450
Drug metabolism - cytochrome P450
Drug metabolism - other enzymes
Metabolic pathways
Chemical carcinogenesis
Module
Ascorbate biosynthesis, animals, glucose-1P => ascorbate
Brite
KEGG Orthology (KO) [BR:aml00001]
 Metabolism
  Carbohydrate metabolism
   00040 Pentose and glucuronate interconversions
    100469290
   00053 Ascorbate and aldarate metabolism
    100469290
   00500 Starch and sucrose metabolism
    100469290
  Lipid metabolism
   00140 Steroid hormone biosynthesis
    100469290
  Metabolism of cofactors and vitamins
   00830 Retinol metabolism
    100469290
   00860 Porphyrin and chlorophyll metabolism
    100469290
  Xenobiotics biodegradation and metabolism
   00980 Metabolism of xenobiotics by cytochrome P450
    100469290
   00982 Drug metabolism - cytochrome P450
    100469290
   00983 Drug metabolism - other enzymes
    100469290
 Human Diseases
  Cancers
   05204 Chemical carcinogenesis
    100469290
Enzymes [BR:aml01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.1  Hexosyltransferases
    2.4.1.17  glucuronosyltransferase
     100469290
Glycosyltransferases [BR:aml01003]
 Others
  Hydrophobic molecule
   100469290
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
Position
Un
AA seq 946 aa AA seqDB search
MLNKNVLLWSLMISLLGITLGGNVLIWPMEGSHWLNIKIIIDELIKKEHNVTVLVASGAL
FITPTSNPSLIFEIYKVPFGKERIEGIIKNFVLTWMENRPSPSTIWRFYQEIAKVIKDFH
MLSREICDGVLKNQKLMDKLKKSKFEVLISDPVFPCGDIVALKLGIPFMYSLRFSPASTV
EKHCGKVPFPPSYVPAILSELTDQMSFTDRVRNFMSYHLQDYMFDTLWKSWDSYYSEALG
IGNVLIWPMDGSHWLNIKVILEELVQRNHNVTVLASSTTAFINSNPDSPVNFEVIPVSYT
NSHIDSFIEHMIMLWIDHRPTLLTLWTFYKELGKLLDTFFQINVQICDGILNNPKLMARL
QKGGFDVLVVDPTTICGDLVALKLGIPFVYTLRFSPASTVERHCGKIPACLLWNAVMVAK
EWISAIVLLQVCYTGWGLCGKVLVWPCDMSHWLNLKIILEELTERGHAVTVLVSPESFII
DYSKASTLKFEVVPMPPNREMAEKTLNDFLHLATNVMPTLSLWQSVMKLQEFFLQITEKL
KLLCESVVYNQSFMKKLQETKYDIMVIDPALPCGELIAELLTIPFVYTLRFSIGDTLEKY
CGKLPAPLSYVPVAMVGLTDRMTFLQRVKNVMFFILSNFWIQQLDTQVWNQFYSETLGRP
TTLCEIMGKAEIWLIRTYWDFEFPRPYLPNFEFVGGLHCKPAKPLPKEMEEFVQSSGEDG
VVVFSLGSMVKNLTDEKANLIASALAQIPQKVLWRYKGKKPATLGANTRLYDWIPQNDLL
GHPKTKAFITHGGTNGIYEAIYHGVPMVGVPMFADQPDNIAHMKAKGAAVEVNINTMTSE
DLLTALRTVINEPSYKENATRLSRIHHDQPVKPLDRAVFWIEFVMRHKGAKHLRPAAHNL
TWFQYHSLDVIGFLLACVATAIFLVTKCCLFSCRKFGKTGKKKKRE
NT seq 2841 nt NT seq  +upstreamnt  +downstreamnt
atgttaaacaagaatgttctactgtggtctctcatgatcagtctcttaggaatcactctc
ggtggtaatgttctgatttggccaatggaagggagtcattggctgaacattaagataatt
atagatgagctgattaaaaaagagcataatgtgactgtcttagttgcctctggtgcactt
ttcatcacgccgacctctaacccatctctgatatttgaaatatataaggtgccctttggc
aaagaaagaatagaaggaattatcaagaactttgttttgacatggatggaaaataggcca
tctccttcaaccatttggagattctatcaggagatagccaaagtcatcaaggactttcac
atgctatctagagaaatctgtgatggtgttctcaaaaaccaaaaactaatggacaagctg
aagaaaagcaaatttgaggtcctgatatcagatccagtgtttccttgtggggacatagta
gctttaaaactgggaattccatttatgtactccttgaggttttctccagcttcaacagtg
gaaaagcactgtgggaaggtaccattccctccttcctatgttcctgctatattatcagaa
ctcaccgaccagatgtctttcactgacagagtaagaaatttcatgtcctaccatctgcag
gactacatgtttgacactctttggaaatcatgggattcctactatagtgaagctttgggt
attggaaatgtgctaatttggccaatggatggtagccattggttaaatattaaggtcatt
ctagaagagctggttcaaagaaatcacaatgtgactgtactggcttcatcaacaactgca
ttcatcaactctaatcctgattctcctgtgaattttgaggtgatacccgtctcctacacg
aacagccatatagactccttcattgaacacatgataatgctgtggatagaccacagacca
actcttctcacactctggactttctataaagaactaggaaaacttctagatacttttttt
caaatcaatgtacaaatctgtgatggaatattaaacaaccccaagttaatggcaagactt
cagaaaggtggttttgatgtgttagtagtagacccaacaactatctgtggggacctggtt
gctctgaaattaggaattccatttgtgtacacgttgaggttctctccagcctccacagtt
gagagacattgtgggaaaatcccagcctgcctcctatggaacgctgtcatggtggctaag
gaatggatttcagcaattgtgctgctgcaggtctgttacactggctggggactctgtggg
aaggtcctggtctggccttgtgacatgagccattggctcaatttaaagattattctagag
gaactcacggaaaggggccatgcggtgactgtgctggtttctccagagagtttcatcatt
gactacagcaaggcttccacgctgaaatttgaggtggtccctatgcctcctaacagagag
atggctgaaaaaacactcaatgattttttacacctggctactaatgttatgccaacattg
tcactatggcagtccgtcatgaaactgcaagaattctttcttcaaataacagaaaaattg
aaactcctgtgtgagagtgtagtctacaaccagtcattcatgaagaaactccaggaaacc
aagtacgacataatggtaatagaccctgcgttgccctgtggagagctgattgctgagtta
ctgacaatcccttttgtgtacacactaaggttttctataggtgacactctggagaaatac
tgtgggaaacttccagctccactttcctatgtgcctgttgccatggtgggactaacagac
agaatgacctttctgcaaagggtaaaaaatgtaatgtttttcattctctctaacttctgg
atccaacaactggacactcaggtttggaaccagttttacagtgaaacattaggaagaccc
actacattatgtgagattatgggaaaagcagaaatttggctaatccggacgtattgggat
tttgaatttcctcgtccatacttacctaattttgagtttgtaggaggcttgcattgtaaa
cctgccaaaccattacctaaggaaatggaagaatttgtccaaagttcaggtgaagatggt
gttgtggtgttttctctgggatcaatggtcaaaaacctcacagatgaaaaagccaatctc
attgcctcagcccttgcccagattccacagaaggttttatggagatacaaaggaaagaaa
ccagccacattaggagccaatactcggctctatgattggataccccagaatgatcttctt
ggtcatcccaaaacaaaagcttttatcactcatggtggaaccaatgggatctatgaagct
atttatcatggggttcctatggtgggagttcctatgtttgctgaccaacctgataacatc
gctcacatgaaggccaaaggagcggctgtggaggtgaacataaacacaatgaccagtgaa
gatctgctcactgccttgagaacagtcattaatgaaccttcttataaagagaatgctaca
aggttatcgaggattcaccacgatcagcctgtaaagcccctggatcgggcagtcttctgg
attgagtttgtcatgcgccacaaaggagccaagcatctgcggccagctgctcacaacctc
acctggttccagtaccactctctggatgtgattgggttcctgctggcctgtgtggcaact
gctatattcttggtcacaaaatgttgtttgttttcttgtcgaaaatttggtaaaacagga
aagaagaaaaagagggaatag

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