KEGG   Pyrenophora teres: PTT_14992
Entry
PTT_14992         CDS       T01613                                 
Name
(GenBank) hypothetical protein
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
pte  Pyrenophora teres
Pathway
pte00350  Tyrosine metabolism
pte01100  Metabolic pathways
pte01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:pte00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    PTT_14992
Enzymes [BR:pte01000]
 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
     PTT_14992
SSDB
Motif
Pfam: Tyrosinase Tyrosinase_C
Other DBs
NCBI-ProteinID: EFQ88923
UniProt: E3RZD3
LinkDB
Position
Unknown
AA seq 733 aa
MKSFFSSLAAFAISLSLLASAQAVSNSTNGSLCGVTKPDDSYFSVLGVQGTGVHPRQELR
ELQKDRELWNMFLQAFSRFQSMDQSEKTSYFQVAGIHGAPFGPWDEVKGQSGQEMMGYCP
HTSNLFGTWHRPYLALFEQILHDRAVEIAHEYPIGEARNRALAIAARVRLPYWDWAMNPP
NPQEGVMPESLRCHTVTVTFPNGTVGEIRNPLYRYDFHPLKSEDFAPLSEFRFKDWGHTI
RYPLHPYALNATSRDIEVNVRVGKQQPNLRDMLYKLLTIYQPFSQVSNKASGGTIGNFET
LHDGLHSVFGLGHMGVVEVSAFDAVFWFHHCNIDRILAIYQTRYPDTWIEDAKQATGSFT
VARGSVLGTESPLAPFHMNALGDMWTSTTSRDWTSFGYTYPEVANNPDNATLTSSINRLY
KPKTQGLSNVNATYPVPGGNYTNGTAQAIDWLCQVNLPTDIKISYSVRAFLGEPSTNPVD
WPIDPNYVGQIASMSSPRMSSSVVTTGNIVLTEKLAQKHASGELKSLDKETVAAYLKEKF
SWRIQALDYTEIPRTNPPAGLNVTVFNVPVSIPKSDTEVPTWNGQIEYKEEIRGNPPVYN
GPGPDGTNSTLPVGQSSGVYNAVTGEFEWKNATNAAIGGGAAPVPDTKTETSLIKSIVTQ
HLSAASSAASTSVPASRVPSASVVEASSASPTSQSTPSTTRTWSFARVSPRPTKPADPQT
AYVTSVVYEYVTV
NT seq 2202 nt   +upstreamnt  +downstreamnt
atgaagtccttcttttcttccctggctgcatttgccatatcactttcgcttctagcaagc
gcccaagccgtatccaactcaaccaatggctctttatgcggagttaccaagccagacgat
agctacttcagtgttctcggcgtacaaggaaccggggtgcatccgaggcaggagcttcgt
gagctccaaaaggacagagagctatggaacatgttcttgcaagcgttttctaggttccaa
tctatggatcaatcggaaaagacctcttacttccaggtagccggtatccacggggcgcct
ttcgggccgtgggacgaggtgaagggacaatctggccaggagatgatgggctattgtcct
catacatccaacctcttcggcacgtggcatcggccataccttgcactcttcgagcagatt
cttcatgaccgtgctgtggaaatcgctcacgagtaccccattggcgaggcccgtaacagg
gctttagcaattgcggctcgagtgcgtctgccatactgggactgggcaatgaatccgcca
aatccccaagagggcgtgatgccagaaagtcttcgctgtcatactgtcactgtcactttt
ccgaatggaactgtaggggaaattcgcaaccctctgtaccggtatgacttccacccactc
aagagtgaagactttgctcccttgagcgaattccgattcaaagactggggtcacactatc
cgctacccgcttcacccatatgctcttaacgccactagccgtgatatcgaagtgaacgtg
cgagtaggaaaacagcagcctaatctccgcgacatgctctacaagctattgactatatac
caacccttcagccaagtgagtaacaaggctagcggtggaactatcggtaacttcgagaca
ctccacgacgggctacatagtgttttcggcctcggacatatgggtgtcgtcgaagtatca
gcatttgatgcggtcttttggttccatcactgcaacattgatcgaatcttggctatatac
caaactcgctaccccgatacatggattgaagacgccaagcaagcgacaggatctttcact
gttgccagaggtagtgtcctcggaacagagtcaccactggctccatttcacatgaatgct
cttggtgacatgtggacttccaccacatcgcgggactggacttcctttggatacacctac
cccgaagttgccaacaaccctgacaatgcgacacttacttcgtctatcaaccggttatac
aaacccaagactcaaggactaagcaacgtcaacgcaacataccctgttccaggagggaac
tataccaatggcactgctcaggccatagattggctatgccaagtcaacttgccgaccgat
atcaagatctcctactctgtccgcgccttcttgggcgagcccagtaccaacccagttgac
tggcctatagaccccaattatgtgggtcagatcgcctccatgtcttctccccgcatgagc
tcttctgtcgtcaccacgggtaacatcgtgctgacggagaagcttgcgcagaagcatgca
tccggtgagctgaaaagtttggacaaggagacagttgcagcctatcttaaggagaagttc
agctggcgtattcaagccctggattacacagagattccgcgcaccaacccgcctgccggt
ctgaacgttaccgtgttcaacgtaccagtcagcatccctaaatcggacactgaagttcct
acttggaacgggcaaatcgagtataaagaggagatccgtggtaacccacccgtgtataat
ggacctggccccgatggcacaaactcgacacttcccgtgggccagagtagcggagtttac
aatgcagtaactggagagtttgaatggaagaatgccacgaatgctgcaattggtgggggc
gcggctccagtgcctgacacgaagactgaaacgtctttgatcaagtccatagtgacgcag
cacttgagcgccgcttcttctgctgcgtccacgtctgtacccgcgtctcgtgtcccaagt
gcgtctgttgtggaagcatcttcagcatccccgacatctcaatccacgccttctaccact
aggacatggtcttttgcaagggtgtctcccagaccaacgaaaccggctgatcctcagacg
gcgtacgtcacttcggttgtctatgagtacgtcaccgtgtaa

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