KEGG   Caulobacter mirabilis: CSW64_10860
Entry
CSW64_10860       CDS       T05166                                 
Name
(GenBank) hypothetical protein
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
cmb  Caulobacter mirabilis
Pathway
cmb00350  Tyrosine metabolism
cmb01100  Metabolic pathways
cmb01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:cmb00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    CSW64_10860
Enzymes [BR:cmb01000]
 1. Oxidoreductases
  1.14  Acting on paired donors, with incorporation or reduction of molecular oxygen
   1.14.18  With another compound as one donor, and incorporation of one atom of oxygen into the other donor
    1.14.18.1  tyrosinase
     CSW64_10860
SSDB
Motif
Pfam: Tyrosinase PPO1_DWL
Other DBs
NCBI-ProteinID: ATQ42874
UniProt: A0A2D2AXZ0
LinkDB
Position
2195260..2196693
AA seq 477 aa
MTSVTRRAALVGGGATIPFAQWYASQSWARAPFVRKDLSTPAGQADLAKYAKAVKIMSGL
AEANPRGWMFQWYIHAVRGDRTKAAELARVYPAPSPQRTLAQASWSTCQAHSAGTVENYF
LPWHRMYVFFLEAICRKLLQDNSFVLPYWRYTQPNQRALPVAFRQQASPQWGTLYRPNRN
PGINNGVPIDQGLNPTPINTLSLNQTSYVPAAGQQGFCLNIDANLHGSVHVRVGNGQGMG
SVPWAANDPIFWMHHCNIDRMWASWNRNGGCNPTDATWLNKTFTFPDANGNSVVAKIGDF
KSIGALGYTYDVFEPGPRIGGCLPFVLNVRDLPLLAVQRRPFKLDPGGPVEIKLEATSAE
AMRGNPKNLGITKRTGRTLLVIDGLQAKVQPGVLYEVGVKDAAGKTTVVGHLNFFDAVSA
EHGDHGDHGGAMPEKFFAFDVTRYIKKGEQPTVVLRPDGKADAQADAVVTGFSLVQD
NT seq 1434 nt   +upstreamnt  +downstreamnt
atgacctcagtaacccgtagagccgcgctcgtcggcggcggcgcgacgatcccgttcgcg
cagtggtatgcgtcccagtcctgggcccgcgcgcccttcgtccgcaaggatctgtccacg
cccgccggccaggcggacctggccaagtacgccaaggccgtgaagatcatgtcgggtctg
gcggaagccaatccccggggctggatgttccagtggtacatccacgccgtgcgcggcgac
cgcaccaaggccgcggagctcgcccgcgtctatccggctcccagcccgcagcggaccctg
gcccaggccagctggagcacctgtcaggcgcactcggccggcacggtggagaactacttc
ctgccctggcaccggatgtacgtcttcttcctggaggccatctgccgcaagctgctgcag
gacaacagcttcgtgctgccctactggcgctacacccagcccaaccagcgagccctgccg
gtcgccttccggcagcaggccagcccgcagtggggcacgctgtaccggcccaaccgcaac
cccggcatcaacaacggcgtgccgatcgaccagggcctgaacccgaccccgatcaacacc
ctgtcgctgaaccagaccagctatgtcccggcggccggccagcagggcttctgcctgaac
atcgacgccaacctgcacggcagcgtccacgtccgggtcggcaacggccagggcatgggt
tcggtgccctgggcggccaacgacccgatcttctggatgcaccactgcaacatcgaccgc
atgtgggccagctggaaccggaacggcggctgcaacccgaccgacgcgacctggctgaac
aagaccttcaccttcccggacgccaacgggaacagcgtcgtggccaagatcggcgacttc
aagtcgatcggcgcgctgggctacacctacgacgtcttcgagccgggcccgcggatcggc
ggctgtctgcccttcgtgctcaacgtccgcgacctgccgctgctggcggtccagcgccgg
ccgttcaagctcgaccccggcgggcccgtggagatcaagctggaggcgacctcggccgag
gcgatgcgcggcaatcccaagaacctgggcatcaccaagcggacgggccggacgctgctg
gtcatcgacggcctgcaggccaaggtccagcccggcgtgctctacgaggtcggcgtgaag
gacgcggcgggcaagaccaccgtggtcggccacctgaacttcttcgacgcggtctccgcc
gaacatggcgaccacggcgatcacggcggcgcgatgccggagaagttcttcgcctttgac
gtcacccgctacatcaagaaaggcgaacagccgaccgtggtgctgcggccggacggcaag
gccgacgcccaggcggacgccgtggtgaccggcttcagcctcgtgcaggactag

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