KEGG   Anolis carolinensis (green anole): 100552049Help
Entry
100552049         CDS       T01608                                 

Definition
UDP-glucuronosyltransferase 1-1-like
Orthology
K00699  
glucuronosyltransferase [EC:2.4.1.17]
Organism
acs  Anolis carolinensis (green anole)
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
Module
Glucuronate pathway (uronate pathway)
Ascorbate biosynthesis, animals, glucose-1P => ascorbate
Brite
KEGG Orthology (KO) [BR:acs00001]
 Metabolism
  Carbohydrate metabolism
   00040 Pentose and glucuronate interconversions
    100552049
   00053 Ascorbate and aldarate metabolism
    100552049
   00500 Starch and sucrose metabolism
    100552049
  Lipid metabolism
   00140 Steroid hormone biosynthesis
    100552049
  Metabolism of cofactors and vitamins
   00830 Retinol metabolism
    100552049
   00860 Porphyrin and chlorophyll metabolism
    100552049
  Xenobiotics biodegradation and metabolism
   00980 Metabolism of xenobiotics by cytochrome P450
    100552049
   00982 Drug metabolism - cytochrome P450
    100552049
   00983 Drug metabolism - other enzymes
    100552049
Enzymes [BR:acs01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.1  Hexosyltransferases
    2.4.1.17  glucuronosyltransferase
     100552049
Glycosyltransferases [BR:acs01003]
 Others
  Hydrophobic molecule
   100552049
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
Position
1
AA seq 870 aa AA seqDB search
MALPLPLCSLVLWAFSLLISSPSADAGKLLVLPMDGSHWLSMSKVLKKLSLKGHEIVVLV
PETSLLLKDLSYTTKIYPVPHTQKELEEVYQKFGHSLFSDEPFVKRVIQIHKNLREFINM
MYSSCHSLLHNEDLMNYVNVSRFDAVLTATTVPCGSILSDFFQIPVVNFLRGIACNLDLK
AAQCPSPPSFVPNMFSPFTDNMTFLQRVANMLIRSMDFLLCKYVYSQFDDLASEFLHKDV
TLLDLFSKSPVWLLRYDFVFEYPRPTMPNMVFIGGINCVQKKNLTQKSSQTITLNIFTLI
GEGYFPLSRLLSHACAKFYSLHHSDTERIVSLGAIRTEMACLKSRSHVAVGITCLLSFCH
LAESGKLLVVPQDGSHWLSMKMALEELAQRGHEVVVLMPENTFLMQTSEHFTVRTHSVPY
TQEELDAHYRSLGTAIFDDSPFLEKIFLMYINTTRITAFYASACRDLLYDKELITFLQQS
KFDAMFSDPILPCGPILAEYLSLPTVYFLRGLPCGLDYKAAQCPVPLSYVPWGFTSFSDH
MSFIERVKNLITSPLQYLLCRLFFANHEELASEFLQRTTTISELFSKTSIWLMRYDFVFE
YPRPVMPNMIYIGGITCAQKKPLSKEFEAIVNESGEHGIVVFSLGSMVSEIPMKKAMEIA
EGLGTIPQTVLWRYTGETPPNLAKNTKLVKWLPQNDLLAHPKTRAFITHAGSHGVYEGIC
NGVPMVLMPLFGDQMDNAKRVESRGAGVALNIIEMTAKDISEALKAVIYDKKYKENIQRL
SELHLDRPIHPLDLAVHWVEFVMKHKGAPHLRPAAHDLNWVQYHSIDVLAFLLAASLLAL
FISMKCCMFCCRKCFCKSGRLTKKSKSKSH
NT seq 2613 nt NT seq  +upstreamnt  +downstreamnt
atggctctaccccttccactctgctctttagtcctctgggcattttcccttctcatctcc
tctccttctgcagacgctgggaagctcctggtgttgcctatggatggaagccactggctc
agcatgagtaaagtactgaagaaactgagtctgaagggacatgaaatagttgttctggtg
ccagaaacaagcctcctcttgaaagatttatcctacaccaccaagatatatccagtacca
cacacacagaaggaactggaggaagtttaccagaaatttgggcattcacttttctctgat
gaaccttttgtcaagagagttattcagatacataagaatttaagagaatttattaacatg
atgtactctagctgtcactccttattacacaatgaagacttgatgaattatgtcaacgtg
tctcgctttgatgctgtccttacagctactacagtaccctgtggatccatactttctgat
ttttttcaaattccagtggtgaattttttgcgaggaatagcttgcaatttggacttgaaa
gcagcccagtgcccaagcccaccttcatttgttcccaacatgttttcccctttcacagac
aacatgacatttctccagcgtgtggccaatatgttaattaggtcgatggattttttgctt
tgcaagtatgtgtactctcagtttgatgatttagcttcagagtttcttcataaggatgtc
acacttctagatctcttcagcaagtcacctgtttggctgctgaggtacgattttgtgttt
gaatatcctagaccaacaatgcccaacatggttttcattggaggcatcaactgtgtgcag
aagaaaaacttaactcagaaatcttcccagaccatcacactaaacatcttcacactgatt
ggggaaggctacttcccattgtccagactcctcagccatgcttgtgctaaattttacagt
ttacaccattcagatacagagcgcatagtgagtttaggtgccatcaggaccgaaatggca
tgtttgaaatcaagaagccatgtagctgttgggattacatgtttgctttctttctgtcac
ttggctgaaagtggaaagctcttggttgtgccacaggatggaagccactggcttagcatg
aaaatggcactagaggagcttgcacaaagagggcatgaggttgtagtgttaatgccagaa
aacaccttcctcatgcagacatctgagcacttcactgtgaggactcattcagtgccttat
acccaggaggagttggatgcccattaccgttcattaggtacggctatctttgatgactct
ccattcctggagaagatttttctcatgtacattaatacaacaagaattacagccttttat
gcttctgcttgtagggatcttctgtatgataaagaactaatcacattcctccaacagagt
aaatttgatgccatgttttcagatcctatactgccttgtgggccaatccttgccgaatac
ctgtccttgcctactgtgtactttttgcgtggacttccatgtggcctagattacaaagca
gctcagtgtccagtccctctttcatatgtcccatggggatttacttctttctcggatcac
atgagctttattgaacgcgtgaagaatttaataacctcacctctacagtatttactttgc
cgtctattttttgcaaatcatgaagagcttgcatctgagtttctacagaggacaaccaca
atctcagaacttttcagtaaaacatccatttggctcatgagatacgactttgtatttgag
taccccaggccagtgatgcccaatatgatctacattggaggcatcacctgtgcacagaag
aagccattgtccaaggaatttgaagccatagtaaatgaatcaggcgaacatggcattgtg
gtgttttccttgggttctatggtctctgaaattccaatgaaaaaagccatggaaattgct
gaaggacttggaaccatacctcagacggtgctgtggcggtacacaggagaaactccaccc
aaccttgccaagaacacaaagcttgtcaagtggcttccacaaaatgacctgcttgctcac
cccaagaccagagcctttatcacacatgcaggctctcatggggtatatgaagggatctgc
aatggagtaccaatggtgctgatgccactcttcggggatcaaatggataacgcaaagcgg
gtggaatctcgaggagcaggagtggctctgaacataattgaaatgactgcaaaggacata
tctgaagccctgaaggctgttatttatgataaaaagtataaagagaatatccagcgcctc
tcagaacttcacctggacagacccatccaccctctcgatctcgctgtgcattgggtggag
tttgtgatgaagcacaagggagctccccacctgaggccagcagcccatgacctcaactgg
gtccagtaccactctattgatgtccttgccttcctcctggctgcatcactgctagcactg
ttcatttccatgaagtgttgcatgttttgctgcaggaagtgtttctgcaaaagtggaaga
ctaaccaagaaaagcaaatcaaagtctcactaa

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