KEGG   Takifugu rubripes (torafugu): 101071697Help
Entry
101071697         CDS       T02386                                 

Definition
UDP-glucuronosyltransferase 2B1-like
Orthology
K00699  
glucuronosyltransferase [EC:2.4.1.17]
Organism
tru  Takifugu rubripes (torafugu)
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
Brite
KEGG Orthology (KO) [BR:tru00001]
 Metabolism
  Carbohydrate metabolism
   00040 Pentose and glucuronate interconversions
    101071697
   00053 Ascorbate and aldarate metabolism
    101071697
   00500 Starch and sucrose metabolism
    101071697
  Lipid metabolism
   00140 Steroid hormone biosynthesis
    101071697
  Metabolism of cofactors and vitamins
   00830 Retinol metabolism
    101071697
   00860 Porphyrin and chlorophyll metabolism
    101071697
  Xenobiotics biodegradation and metabolism
   00980 Metabolism of xenobiotics by cytochrome P450
    101071697
   00982 Drug metabolism - cytochrome P450
    101071697
   00983 Drug metabolism - other enzymes
    101071697
Enzymes [BR:tru01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.1  Hexosyltransferases
    2.4.1.17  glucuronosyltransferase
     101071697
Glycosyltransferases [BR:tru01003]
 Others
  Hydrophobic molecule
   101071697
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
Position
21
AA seq 1028 aa AA seqDB search
MKPAQRLPLSVFLVFSVTLSAHGGNILVWYTEGSHWINLKPVLDTLIDRGHHVTVLVPSS
SMFMNTSEPSRFRYEPFNVSISREVMEKSMEEFLHFSIYEMDHMSYWEIYNKFQAMVHIN
LQNNLKCLDGVVKSETMMKRLREGNYDLLLSDPLYPGSDLLAEMLDLPLVFSLRFSLANN
WERHCGQIPAPPSFVPIAMSKMTDKMNFFERVLNFFLYALQDIVIENTLWKDLDAYYSEV
KGTPTSACKVMSNTDIWLMRTYWDFDFPRPFLPNFKFVGGIHCRPAKPLPEDMEEFAQSS
GDAGIVVFTLGSMIKNITKEKSNMIASALAQIPQKVLWRYSGEKPDTLGANTRLFDWMPQ
NDLLGHPKTRAFITHGGTNGIYEAIYHGVPMVGIPMFGDQPENLVHMMAKGVATTVDFTT
MTTEGLRDAINDVINNKSYKENAMRLSKIHHDRPLSARDEAVFWIEFTMRNKGAKHLRVH
SHDLTWYQYHSLDVLAFLLTIILLLAALFTKTCCFCLRRCCGRKGPTKKTKKMKKKAEHT
MSTVWCLSLALLLVLSATRIAHGGNILVWYTEGSHWINLKPVLDTLIDRGHRVTVLVPST
SMFMNRSEPSRFHYEPFDVSISLEVIEASNEEFLQFSMYEIDHMNYIEMYIKFIDLAMIE
LRNNLKYLDGVVKSETIMKRLKEAKYDLLLADPLYPGSELLADLLNLPLVFSLRFSPALN
WERHCGQIPAPPSFVPGAMSKLTDTMDFSERLWNFLFYAVQDIVMQFTYWKEVDNYYSEF
KGEPTSSCELMSKADIWLMRTYWDFDFPHPYLPNIKFVGGIHCRPAKPLPKVLWRYSGKV
PDTLGANTRIYQWIPQNDLLAHPKTRAFITHGGTNGIYEAIYHGVPMVGIPMFADQPDNL
VHMMAKGAAVMVNLNFINAEGLRDAINTVINDKSYKENAMRLSKIHHDRPMSPRDEAVFW
IEFTMRNKGAKHLRVQAHELTWYQYHSLDVLAFLLTVALLLVFFFIKICCFCIRRCCSRK
AQGKRKFE
NT seq 3087 nt NT seq  +upstreamnt  +downstreamnt
atgaagcctgcacagcgtctccctctgtctgtcttcctggttttttctgtgactctgagc
gcacatggagggaatatcctggtctggtacaccgaaggcagccactggatcaacctgaag
cctgtgctggacactctgatcgacaggggacaccatgtgacggttctggttcccagctcc
tcgatgtttatgaacaccagcgaaccttcacgctttcgctacgaacccttcaatgtctcc
atttcaagggaagtaatggagaaaagcatggaggagtttcttcacttctccatttatgag
atggatcacatgagctactgggagatatacaacaaattccaggctatggttcacatcaat
ctgcagaacaatctgaagtgtttggacggtgtggtgaaatcagaaaccatgatgaagaga
ctcagggaaggaaattatgacctcctcctgtccgatcccttgtacccaggcagtgacctg
ttggcagagatgctggaccttcctctggtcttctctctgcgcttttctctggccaataac
tgggagagacactgtggtcagatccccgccccaccttcatttgtacccatcgctatgagc
aaaatgactgacaagatgaacttctttgagcgagtcctcaacttcttcttatatgcactg
caagatattgtgatagaaaacaccctctggaaagatttagatgcgtattactctgaagtc
aaaggaacacccactagtgcctgcaaggtgatgagcaacacagacatctggctgatgaga
acctactgggattttgatttccctcgtccgttcctcccaaactttaaatttgttggtggg
atccactgcagacctgctaaacctttaccagaggacatggaagaatttgcacagagctct
ggagatgctggtatcgtggtcttcaccctgggatcgatgatcaaaaacatcacgaaggag
aagagcaacatgatcgcctcggccctggcccagatcccacagaaggtgctgtggagatac
agtggagaaaaaccagacactctgggtgccaacaccagattatttgactggatgcctcag
aacgatctacttggtcatcccaagaccagagcgttcatcactcatgggggcactaatggc
atttatgaggccatctaccatggcgtccccatggtgggcatccctatgtttggtgatcag
ccagaaaacctggtccacatgatggctaaaggagtcgcaactaccgtggacttcaccaca
atgacgacggagggcctgagagatgcgatcaatgatgtcatcaacaacaaatcgtacaag
gagaacgccatgcgcctgtccaagatccaccacgacaggccgctgagcgctcgggatgag
gcggtgttctggatcgagttcaccatgaggaacaaaggggccaaacacctgagggtccat
tcccatgatctcacctggtaccagtaccacagcctggatgtcctggccttcctgctcacc
atcattctgctcctcgcagccctcttcaccaagacctgttgtttctgcctgcggagatgc
tgcggcagaaaagggccaacaaaaaagacgaaaaagatgaaaaagaaggcggagcacacc
atgagcactgtgtggtgtctctcgcttgccctcctgttggtactttctgccacacggatt
gcacatggagggaatatcctggtctggtacaccgaaggcagccactggatcaacctgaag
cctgtgctggacactctgatcgacaggggacaccgtgtgacggttctggttcccagcacc
tcgatgtttatgaacaggagcgaaccttcgcgctttcactacgaacccttcgatgtctcc
atctcattagaggtaatagaagcaagcaatgaagaattcctacagttctccatgtatgag
atcgatcacatgaactacatcgagatgtacatcaaattcatcgatctggccatgattgaa
ttgcgcaacaatctgaagtacttggacggcgtagtgaaatcagaaaccataatgaagagg
ctgaaggaggccaaatacgaccttctcctggcagatcccttgtacccaggcagtgagctg
ttggcagacctgctgaacctcccactggttttctccctgcgcttctctccagcccttaac
tgggagagacactgtggtcagatccccgctccaccttcatttgtacctggtgccatgagc
aagttgaccgacacgatggacttctcagagagactgtggaatttccttttctatgcagtg
caggatattgtgatgcaattcacctactggaaagaagtcgataattattactctgaattc
aaaggtgaacccacgagttcctgtgagctgatgagtaaagcagatatttggctgatgaga
acctactgggattttgatttccctcatccgtatctccccaatatcaaatttgttggcggg
atccactgcagacctgcaaaaccattaccaaaggtgctgtggagatatagtgggaaagtg
ccagacactctgggtgccaacacaagaatttaccaatggattccacaaaatgacctgctg
gctcatcccaagaccagagcgttcatcactcatgggggcactaatggtatttatgaggcc
atctaccacggcgtccccatggtgggcatccccatgtttgctgatcagccagacaacctg
gtccacatgatggctaaaggagccgccgttatggttaacttgaactttataaatgctgaa
ggcctgagagatgcaatcaacaccgtcatcaatgacaagtcgtacaaggagaacgctatg
cgcctgtccaagatccaccacgacagaccaatgagtcctcgggatgaggcagtgttctgg
atcgagttcaccatgaggaacaaaggggccaaacacctgagggtccaggcccacgagctc
acctggtaccagtaccacagcctggatgtcctggccttcctgctgactgttgcactgctc
cttgtattcttctttatcaagatctgctgtttctgtatacggagatgttgcagcaggaaa
gcacaaggaaaaagaaagttcgagtaa

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