KEGG   Silicimonas algicola: EF888_00260
Entry
EF888_00260       CDS       T05779                                 
Name
(GenBank) homogentisate 1,2-dioxygenase
  KO
K00451  homogentisate 1,2-dioxygenase [EC:1.13.11.5]
Organism
salo  Silicimonas algicola
Pathway
salo00350  Tyrosine metabolism
salo00643  Styrene degradation
salo01100  Metabolic pathways
salo01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:salo00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    EF888_00260
  09111 Xenobiotics biodegradation and metabolism
   00643 Styrene degradation
    EF888_00260
Enzymes [BR:salo01000]
 1. Oxidoreductases
  1.13  Acting on single donors with incorporation of molecular oxygen (oxygenases)
   1.13.11  With incorporation of two atoms of oxygen
    1.13.11.5  homogentisate 1,2-dioxygenase
     EF888_00260
SSDB
Motif
Pfam: HgmA_N HgmA_C
Other DBs
NCBI-ProteinID: AZQ65698
UniProt: A0A316G7K3
LinkDB
Position
complement(49862..51220)
AA seq 452 aa
MTRHELPAGMVRAPDRTGTHDGYMPGFGNDFETEALPGALPQGMNSPQKCEYGLYGEQLS
GTAFTAPSHQNERTWCYRIRPSVKHTHRFRKIALPYWKSAPLVDPDIVSLGQYRWNPVPH
SEGLTWLTGMRTMTTAGDVNTQVGMAAHIYLVTDSMVDAYFYSADSELLIVPQEGRLRFC
TELGVIDLAPQEIAVIPRGLVYRVEVLDGPARGFVCENYGQKFQLPGRGPIGANCMANRR
DFKTPVAAFEDRETPSTVTVKWGGHFHETHIGHSPLDVVAWHGNYAPVKYDLTTYCPVGA
ILFDHPDPSIFTVLTAPSGVEGTANIDFVLFRERWLVAEDTFRPPWYHKNVMSELMGNIY
GQYDAKPQGFVPGGMSLHNMMLPHGPDREAFEKASNAELAPHKLDNTMSFMFETRFPQHL
TPFAATEAPLQDDYIDCWSDLEKKFDGTPGKK
NT seq 1359 nt   +upstreamnt  +downstreamnt
atgactcgacacgagcttcccgccggaatggtccgtgcccccgaccgcaccggcacgcac
gacggctatatgcccggcttcggcaacgatttcgaaaccgaggccctgccgggtgcgttg
ccgcaagggatgaactcgccgcagaagtgcgagtacggtctctatggcgagcagctttcc
ggcaccgccttcaccgcgccgtcgcatcagaacgaacggacctggtgctaccgtatccgg
ccctcggtcaagcacacgcaccgcttccgaaagatcgccctaccctactggaaatccgcc
ccgctggtcgatccggacatcgtctcgcttggacaatatcgctggaacccggtgccccat
tcagagggtctaacgtggctgaccggcatgcgcacgatgaccacggccggggacgtcaac
acccaggtcggcatggcagcgcatatctacctcgtcaccgacagcatggtggacgcctat
ttctactctgccgacagcgagcttctgatcgtgccgcaagagggccggcttcggttctgc
accgagctcggcgtcatcgaccttgccccccaggagatcgcagtgatcccgcgcggcctc
gtctaccgcgtcgaggtgctggacggtccggcgcgcgggttcgtatgcgagaactacggt
cagaaattccagcttccggggcgcgggccgattggggcgaactgcatggccaaccgtcgc
gacttcaagacgccggtcgccgcattcgaggaccgcgaaacgccgtccactgtcacggtg
aagtggggcgggcatttccacgagacccacatcgggcactcgcccctcgatgtcgtggcc
tggcacggcaactacgctccggtgaagtacgacctgacgacctattgcccggtcggcgcg
atcctcttcgatcatcccgatccctcgatctttacggtgctcaccgcgccctccggcgtc
gagggcacggccaacatcgacttcgttctcttccgcgagcgctggctggtggccgaggac
accttccgtccgccctggtatcacaagaacgtcatgtccgagctgatgggcaacatttac
ggccagtacgacgcaaagccgcagggcttcgttccggggggcatgtcgctccacaacatg
atgctgccgcatggcccggaccgcgaggcgttcgagaaggcgtcgaacgccgagcttgcc
ccgcacaaactcgacaataccatgtccttcatgttcgagacgcgttttccccagcacctc
acgcccttcgcggcgacagaggcacccttgcaggacgactacatcgactgctggtcggac
ctcgagaagaagttcgacggcactccgggaaagaagtga

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