KEGG   Bradyrhizobium sp. CCGE-LA001: BCCGELA001_30690
Entry
BCCGELA001_30690  CDS       T04273                                 
Name
(GenBank) hypothetical protein
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
brc  Bradyrhizobium sp. CCGE-LA001
Pathway
brc00350  Tyrosine metabolism
brc01100  Metabolic pathways
brc01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:brc00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    BCCGELA001_30690
Enzymes [BR:brc01000]
 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
     BCCGELA001_30690
SSDB
Motif
Pfam: Tyrosinase
Other DBs
NCBI-ProteinID: AMA60168
UniProt: A0A0X8CN62
LinkDB
Position
6742363..6743751
AA seq 462 aa
MLALPPTDPRNWYRNAIVHLLDCPHGNWWFLGWHRAYLGWLEMTLRDLSGDPEFALPYWD
WTKTQRVPLAMFEGVLDPNNGAFIPTFEKFKTAFEPAVTALYASFSPEQKGALALRPFPF
TTPADFWQVLPQVFFNQPSARGLTATNPDLDSNTRLSVGMSTIRSALRTSRFAGSGAPGA
PAGFQSAKAANHSGGSIKGILESGPHDNVHGAMGGGGDAFMISFFSPVDPIFFLHHGNLD
RLWTVWTRRQTALGRPILPQGADLTAWSDEKFLFFSNAKGEPVLQNKAGDYAATDLFDYD
YSPGSGDDQVPAPGPMAEASPQVFSAQVTSAAVGASTAAGGIANVPAAALGATASADTSP
VVEITMNLGHDDAGRRFRVLVSAGSGSTPVAAGAITVFGHPHHGPTTFTVPLPDSLASAA
TGATVPLDVRVVPIGTPPRPGVAATAAAAPAPLVSAIRIRTD
NT seq 1389 nt   +upstreamnt  +downstreamnt
atgctggccttgcctccaaccgatccgcggaactggtatcgtaacgcgatcgttcatctc
ctcgactgcccgcatggcaattggtggttcctgggttggcatcgcgcatatctcggctgg
ctggagatgacgctgcgcgatctctccggcgatccggagtttgccttgccctactgggac
tggaccaagacgcagcgcgtaccgctggcgatgtttgagggtgtgcttgatcccaacaac
ggcgcattcatcccgacgttcgagaaattcaagacagccttcgagccagccgtcacggcg
ctctatgcgtcgttttcgcccgaacagaagggagcgctggcgctccggccgtttccattc
accacgccggccgatttctggcaggttttgccgcaagttttcttcaatcagccgagtgcg
cgaggtctgacggcgaccaatccggatctcgattccaacacgaggttgtcggtcgggatg
agcacgatacgcagtgcgttgcggacctcccggttcgccggcagcggcgctcccggcgct
ccggccggcttccagagcgcgaaggctgccaaccatagcggtggcagcatcaagggcatt
ctcgagagcggcccccacgacaacgtgcacggcgccatgggtggcggcggagatgccttc
atgatctccttcttttccccggtggaccccatcttcttcctgcatcatggcaatctggat
cggctgtggacggtctggacgcgccggcagactgcgctcggacgtccaatccttccgcag
ggcgccgatctcaccgcgtggtccgacgagaagttcctgttctttagcaatgcaaagggc
gagccggtcttgcaaaacaaggccggtgactacgcagcgactgatctgtttgactacgat
tattcgccgggttcgggcgacgatcaggtgccggcgccgggtccgatggcggaagcttca
ccgcaggtattttccgcccaagtgacatccgctgcggtcggagcttcgaccgcggccggc
ggtatcgccaacgtgccggcggccgctctgggagcgactgcttccgccgacaccagccct
gtggtggagattaccatgaacctcggtcatgatgacgctggccgccgctttcgcgtgctg
gtgtccgccggttcgggcagtacgccagttgcggccggcgcgatcactgtcttcggccat
ccccatcacggcccgacaacatttacggtgccgctgccggattcgctggcttcggccgcg
accggggcaaccgttccgctcgatgtgcgtgtcgtgccgatcggcactccgcctcgtccc
ggtgtggccgcgactgcagccgcagcaccagcacctcttgtcagcgcgatccgaattagg
acagactag

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