KEGG   Cellvibrio sp. PSBB006: CBR65_14155
Entry
CBR65_14155       CDS       T04891                                 
Name
(GenBank) hypothetical protein
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
cell  Cellvibrio sp. PSBB006
Pathway
cell00350  Tyrosine metabolism
cell01100  Metabolic pathways
cell01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:cell00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    CBR65_14155
Enzymes [BR:cell01000]
 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
     CBR65_14155
SSDB
Motif
Pfam: Tyrosinase PPO1_DWL
Other DBs
NCBI-ProteinID: ARU28489
UniProt: A0A1Y0FYM9
Position
3452141..3453619
AA seq 492 aa
MPIRERKNVYMLPNGDQTLEWYARAVAEMRKRPTTDPTSWNFQAGIHGFRPGSPFWANAG
QLPSPGEQTEYWNQCQHGSWYFLPWHRMYLAYFEEIVADTIVKLGGPPNWALPFWDYSDR
SNPYALNIPPAFTAGSPATNPLQMPNGGNYPGRRSTRVDARDVTLGALNNLIFQGSANGG
SSGFGGPVTGFSHSGSVHGALESKPHDLVHVDIGGAMGSPPTAALDPIFWLHHANIDRLW
QVWLNLGNRRSNPIDNAWLKFTFDFRNAQRAPTSLRVMDVVDTTQVLSGYTYQGVPANPP
LQPMNKGFGFITESLFSTFKQGEDDLPPEVAAASLQAVGLNSAGTTVELPFLAANRRNSP
LRSFHAKALHQENALEADVQTATSTFLNFENITGKGLPPACDVYLNLDNGSAADENHYAG
ALAFFGIDEASTADERHSGSGQHYVLDISEVVNELQQQDSWHPEYLKVHLQPREPLDDES
TVNIGRISLYVK
NT seq 1479 nt   +upstreamnt  +downstreamnt
atgcctattcgagaaagaaaaaatgtgtacatgttgccgaatggtgaccagacgctggag
tggtatgcacgggcagtagctgaaatgcgcaagcgaccaaccactgaccctaccagttgg
aattttcaggccgggattcacggattcaggcctggcagtcctttctgggccaacgccggc
caattaccatccccgggggagcaaaccgaatactggaatcaatgccaacacggttcctgg
tattttttaccctggcatcggatgtatctcgcgtattttgaagaaattgttgcagacacg
attgtgaaattgggtggtccgccaaattgggcgttgccgttctgggattacagcgataga
agtaatccttacgctctgaatatcccaccggcttttaccgccggctcgccggctaccaat
cctttgcaaatgccgaatggcggtaattatccgggcaggagaagcactcgtgttgatgcg
cgggatgtcacgctgggggcgctaaacaatttgatttttcaaggatctgctaatggcggt
tcttccggctttggcgggcccgttaccgggttttctcactctggcagcgtccatggcgcg
ttggaaagtaaaccccacgacctggttcatgtggatatcggtggcgcgatgggcagccca
ccaactgccgcactcgatccgattttctggttgcatcacgccaacatagatcggttgtgg
caagtgtggttaaacctgggcaaccggcgcagcaatcctatcgataatgcctggttaaaa
ttcaccttcgatttccgcaacgcacaacgtgcaccaacgtctttgcgtgttatggatgtc
gtggacacaacgcaagtgctctctggctacacctaccaaggcgttcctgccaatccaccc
ctgcaaccgatgaacaaagggtttggcttcataaccgaatccttgttttctacgtttaaa
caaggggaagatgatctgccccctgaagtggcagcggcaagtttgcaggctgtgggatta
aattccgccggtaccacagtagaattaccgtttcttgctgccaaccgtcgcaacagtccg
ctacgcagttttcacgccaaagcattacatcaggaaaatgctctggaggccgatgtgcaa
acagcgacgagcacttttctgaatttcgaaaatatcaccggcaaaggtctaccacccgcg
tgcgatgtctatttaaatttagataatggctctgcggcggacgagaaccattatgcaggt
gccttggcgttctttggtattgatgaagcatcaaccgccgatgagcgacatagcggcagc
ggccaacactatgttctggatatcagcgaggtcgtcaacgaattacagcaacaagacagt
tggcatccggaatatttaaaggtacatctacaaccgcgtgaaccactggatgatgaatcc
acggtcaacattggccgaatcagtttgtacgtaaaatga

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