KEGG   Botrytis cinerea (gray mold): BCIN_11g02170
Entry
BCIN_11g02170     CDS       T01072                                 
Name
(RefSeq) hypothetical protein
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
bfu  Botrytis cinerea (gray mold)
Pathway
bfu00350  Tyrosine metabolism
bfu01100  Metabolic pathways
bfu01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:bfu00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    BCIN_11g02170
Enzymes [BR:bfu01000]
 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
     BCIN_11g02170
SSDB
Motif
Pfam: Tyrosinase Tyrosinase_C
Other DBs
NCBI-GeneID: 5437287
NCBI-ProteinID: XP_024551676
UniProt: A0A384JWB2
LinkDB
Position
11:join(719429..719693,719751..720136,720184..720339,720419..720473,720530..720587,720704..720876,720927..721588)
AA seq 584 aa
MAPSLIRRLGALSLLLSSVVASPLSIPEFLESRADTLAITGVQDGGLQPRLEIRTLAADS
TQWNLFLLAMIAYQGSDQNELSSFYQIAGIHGYPLKPWDGVQAVGAGTSGYCTHGSNLFG
PWHRPYLALHEQQVHTWGVKIARQFNGSNSEAYRQASLTLRMPYWDWAANPANNGPILPN
VLSNPNAFITYPNGSTATVPNPLYSYHFHPLNPSDFRNSAPFNIWENTLRWPTSKNANAI
SQNNLAEEQFEANLPNFRTQIMTLFANWQPYNRFSNKGSGGSGLGNIESIHDTVHTLTGG
FTFNGHMSIVPVAAFDPIFWFHHANIDRLIALWQAVYPDTYVEPTQQRASTFTIQMGSIQ
DQDSPLTPFHRDTSGNFFSSADVRNVENLGYSYPEIVNHPDNATLQQNIATLYSSPPTSF
KKRQAATTNSLPRDYLVKIDLPWTALNGTYSVAVFLGKSSAKPEEWAKDPAYVGMHATLG
TQSMVPNDVIASSNVHLTDALLKKHIEGVLQDLNEDTIINYLTANLQWKAQQGGIEIDIS
TLAGAVVTTESIEVAAPDALGTFSNYKWVGDFKIYPGVFDTLGL
NT seq 1755 nt   +upstreamnt  +downstreamnt
atggcaccaagtctcatcagaaggctcggggccttgtcattattgctcagctctgtcgta
gcctccccactatcgatacccgagtttttagaatctcgagcagatacacttgctatcaca
ggtgttcaagatggaggtctacagccccgtcttgagattcgaacgctcgccgcagattct
actcaatggaacttatttttgttggctatgatagcatatcaaggtagcgatcagaatgag
ttgtcgtcgttctaccaaattgcaggtattcacggttaccccttaaaaccttgggacggc
gttcaagctgtaggagctggaaccagtgggtattgtactcatggatccaatctttttggt
ccttggcatagaccctaccttgcattgcacgagcaacaagtacatacctggggtgtcaaa
attgcgcgacagtttaacggcagcaactcagaagcttatcgtcaggcatctttgactctc
agaatgccatattgggattgggctgccaaccctgccaacaatggacctattctccccaat
gtcttgagcaatccaaacgcttttatcacatatcccaatggtagtacggcaacagttccc
aatccattgtattcctatcactttcaccccttgaatccaagcgactttcgaaattctgct
ccattcaacatatgggaaaacacgcttcgttggccaacatcaaaaaatgccaacgccata
agtcaaaacaacctcgcggaagagcaatttgaagccaacttgccgaatttcagaacacaa
atcatgactcttttcgcaaattggcaaccatataaccgattcagcaacaagggatccggt
ggctcaggcctaggcaacattgaatcgattcacgatacagttcacacgttgaccggaggc
tttacctttaatggtcacatgtctattgttccagtcgccgcattcgatccaatcttctgg
tttcaccatgccaatattgacagattaatcgccctttggcaagctgtatatcccgataca
tatgtcgaaccaacacagcagagagcaagcacattcaccattcagatgggttctatccaa
gatcaagattctcctttgactccatttcatcgagatacgagtggtaacttcttctcctcc
gccgatgtgcgcaacgtcgaaaatcttggctactcctatcctgagatagtcaatcatccc
gacaacgccactctccaacaaaacattgctacgctgtatagcagtcccccaaccagcttc
aagaaacgacaagcagccaccacaaactcacttccacgcgactaccttgtgaagatcgat
ttgccatggacagctctcaatggtacatacagtgtcgcagtattcctcggcaagagctct
gccaaacccgaggagtgggcgaaagatcccgcatacgttggcatgcatgctacgcttggt
acacaaagcatggtgcccaatgatgttattgcttcaagcaatgtgcatcttaccgatgct
cttcttaaaaaacatattgaaggcgttctgcaagatttaaatgaggatactattattaac
tatttaactgctaatctacagtggaaggcccaacagggcggcattgagattgatattagt
acccttgctggtgcggttgtgacaacggagtcaatcgaggttgctgcccctgatgctttg
ggcactttctcaaattataagtgggtaggagatttcaagatctacccaggtgtgtttgat
acccttgggctttga

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