KEGG   Vibrio cholerae O1 El Tor MS6: MS6_1122
Entry
MS6_1122          CDS       T03666                                 
Name
(GenBank) 4-hydroxyphenylpyruvate dioxygenase
  KO
K00457  4-hydroxyphenylpyruvate dioxygenase [EC:1.13.11.27]
Organism
vcs  Vibrio cholerae O1 El Tor MS6
Pathway
vcs00130  Ubiquinone and other terpenoid-quinone biosynthesis
vcs00350  Tyrosine metabolism
vcs00360  Phenylalanine metabolism
vcs01100  Metabolic pathways
vcs01240  Biosynthesis of cofactors
Module
vcs_M00044  Tyrosine degradation, tyrosine => homogentisate
Brite
KEGG Orthology (KO) [BR:vcs00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    MS6_1122
   00360 Phenylalanine metabolism
    MS6_1122
  09108 Metabolism of cofactors and vitamins
   00130 Ubiquinone and other terpenoid-quinone biosynthesis
    MS6_1122
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:vcs04147]
    MS6_1122
Enzymes [BR:vcs01000]
 1. Oxidoreductases
  1.13  Acting on single donors with incorporation of molecular oxygen (oxygenases)
   1.13.11  With incorporation of two atoms of oxygen
    1.13.11.27  4-hydroxyphenylpyruvate dioxygenase
     MS6_1122
Exosome [BR:vcs04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   MS6_1122
SSDB
Motif
Pfam: Glyoxalase_5 Glyoxalase Glyoxalase_4 Glyoxalase_3
Other DBs
NCBI-ProteinID: BAP02777
LinkDB
Position
1:1280842..1281915
AA seq 357 aa
MMDSVNPLGTDGFEFVEYTAADEQGIASLKHLFTSLGFAEIAKHRSKEAWLYRQGDINFI
VNAQPRSQAEAFAKQHGPSVCGMAFRVKDAAIALKHAQANGAVEYKTEIGPMELSIPAVI
GIGDSLLYFVDRYGDRSIYDVDFHFYPDSKERLAKAQVGLYEIDHLTHNVKRGNMNLWAG
FYERIGNFREIRYFDIEGKLTGLVSRAMTAPCGKIRIPINESSDDKSQIEEFIREYKGEG
IQHIALSTEDIYHTVKTLRERGMDFMPTPDTYYDKVNQRVVGHQEDVQALRDLRILIDGA
PMKDGILLQIFTQTVIGPVFFEIIQRKGNQGFGEGNFKALFESIEEDQIRRGVLTDA
NT seq 1074 nt   +upstreamnt  +downstreamnt
atgatggatagcgtaaacccactcggtacagatggctttgaatttgtggaatatactgcc
gctgatgagcagggcattgccagcctcaaacacctcttcacctctctgggctttgccgaa
attgctaaacaccgttctaaagaagcttggctgtatcgtcagggtgacatcaactttatt
gtcaacgcacagcctcgtagccaagctgaagcgtttgctaaacagcatggcccttcggta
tgcggtatggcgtttcgcgtgaaagacgcggcgattgctctcaagcatgcgcaggccaat
ggtgccgtcgagtacaaaactgagattggacctatggagttaagcattccggcggtgatc
gggattggcgatagcttgctctattttgtggatcgttatggcgatcgcagcatctatgat
gtcgattttcatttctaccctgatagcaaagagcgccttgccaaagcgcaagtggggttg
tatgaaattgaccacctcacccacaacgtgaaacgtggcaacatgaacctgtgggccggt
ttttatgagcggattggtaacttccgtgaaattcgctactttgatatcgagggcaaactg
acggggttggtgagccgagccatgaccgcgccctgtggcaaaatccgtattccgatcaac
gagtcctctgacgataaatcgcaaatcgaagagtttattcgtgagtacaaaggcgagggt
atccagcatatcgcgctcagtaccgaggatatttaccacactgtgaaaaccttgcgtgaa
cgtggtatggactttatgcccacgccggacacctattacgacaaggtgaatcagcgagtg
gtgggacatcaagaagatgtgcaagcactgcgtgacttacgtattttgattgatggtgca
ccgatgaaagatggcattttgctgcaaatcttcactcaaactgtgattgggcctgtgttc
tttgaaatcattcagcgcaaaggtaatcaaggatttggtgaaggtaacttcaaagcgctg
tttgaatcgattgaagaagatcagatccgccgtggagtattgactgatgcataa

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