KEGG   Coprinopsis cinerea: CC1G_14163Help
Entry
CC1G_14163        CDS       T01275                                 

Definition
tyrosinase
Orthology
K00505  
tyrosinase [EC:1.14.18.1]
Organism
cci  Coprinopsis cinerea
Pathway
Tyrosine metabolism
Riboflavin metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:cci00001]
 Metabolism
  Amino acid metabolism
   00350 Tyrosine metabolism
    CC1G_14163
  Metabolism of cofactors and vitamins
   00740 Riboflavin metabolism
    CC1G_14163
Enzymes [BR:cci01000]
 1. Oxidoreductases
  1.14  Acting on paired donors with incorporation 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
     CC1G_14163
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: 
Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
UniProt: 
Position
3
AA seq 615 aa AA seqDB search
MSTRIIVSGISGGSAPNRREINDLVRDEKQFSLYVQALQRMYTGNPQTFPTSFFQIAGIH
GLPYVPWGGSTGTAPFNPATQWGGYCVHGSVLFPTWHRPYMALFEQTLWRHAQDIAAQYT
VDREEWQRAAADLRQPYWDWATNAVPPAEVIERQQVTITNSRGQRVSVPNPLLAYRFQPM
EPTFPRMYQQWPTTLRQPTSGGPGASSNVARLRTVLRRAQPGITTSTFNMLTRVRRWPEF
SSHTVSDGGSDSNSIEIIHDLIHGLVGGHMGDPGVAAFDPLFFLHHTNVDRLLSLWTAMN
PGVGVSPGDSEDGSFTLRPEVPVNRDTPLTPFWNTETTYWASSNVTTTERFGYTYPEFNG
LDMGNAQAVRTAISRIITRLYGGTTAIPRLASFVSGADSAQKPIPASRTKAALRTPAAES
RAADAVEPKSNGEAHEDDNEVNFEVNPGGQPGDIWEWTARVEFKKYELGTSFYVLLFLGA
VPDDENSEEWLTNENLVGCHYAFVNSAASSCANCRGQVNIVEEGFVSLTKGILQKSGLSD
LSPDVVEPYLTSELSWRIQKADGTPVDLEDLEVTVVATPMTLPPGAELPVPGERRKCPGI
THGQKGGSRQGSSLR
NT seq 1848 nt NT seq  +upstreamnt  +downstreamnt
atgtctactcgaatcatcgtctctgggatttcaggtggttcagcaccgaaccgtcgcgag
ataaatgatctagttagagatgagaaacaattctcgctctacgttcaagctcttcagcgt
atgtataccggtaaccctcaaaccttcccaacgtccttcttccaaatcgcgggaatccat
gggctgccctacgttccttggggcgggtccaccggtaccgcaccattcaaccctgccacc
caatggggcgggtactgcgtccacgggtctgttctcttcccaacctggcataggccatat
atggccctttttgaacaaaccttatggcgccacgcgcaagatatagccgcccagtatact
gtagacagagaggaatggcagagagctgctgctgacctgcgacaaccatactgggactgg
gctaccaacgccgtcccaccggccgaggtcattgagcgacagcaagtgactatcaccaac
tcaaggggacagcgtgtttctgtcccaaacccacttctcgcgtatcgtttccaaccaatg
gaacccacgttccccaggatgtatcaacaatggccgactacccttcgtcagccgacgtca
ggtggacctggtgcctctagtaatgtagcgcgacttcgaactgtccttcgccgggcgcaa
cctggtatcaccaccagtaccttcaacatgttaacccgtgttcgtagatggcccgagttc
agcagccataccgtaagcgacggtgggagtgacagtaacagtatcgagatcatccacgac
ctcatacatggtctcgtcggcgggcatatgggtgatcctggtgttgctgccttcgaccca
ctcttctttcttcaccatactaacgtggaccgcctgctctcattgtggactgcgatgaac
cccggagtcggcgttagtcctggggactccgaagatggatcctttacacttcgaccagaa
gtgccggtcaatcgcgatacccccctcacccccttctggaacacggaaaccacctattgg
gcatccagcaatgttacaaccacagaaagattcggctacacataccctgaattcaatgga
cttgatatgggcaatgcgcaagctgtccgcaccgcaatctcccgaatcatcactcgtctt
tacggaggaactacagctattccccgccttgcttcgttcgtctcaggcgctgactcggct
cagaaacccattccagcttcaaggaccaaagcagcacttcgtacaccggcggctgagtca
cgagctgcagacgctgtggagcccaagtccaatggcgaggcccacgaggacgacaatgaa
gtcaactttgaagtcaaccctggaggtcaacccggggacatttgggaatggacggctcgt
gtcgagttcaagaaatacgaattgggcacgagcttctacgtccttctcttccttggtgct
gttcccgacgacgagaactctgaagaatggcttaccaacgagaacctcgtcggatgtcat
tacgcctttgtcaatagtgctgccagcagctgcgccaactgccgcggccaggtcaacatt
gttgaagaaggattcgtgtccttgaccaaaggtatcctccagaagtccggcttgtctgac
ctgagcccagacgttgtggagccgtatttgaccagtgagctttcttggcgtattcagaag
gctgacggaactcctgtcgacttggaggaccttgaagtcacagtcgttgccaccccaatg
accttaccacctggcgctgaacttcctgtcccaggagaacgtcgaaaatgccctggtatc
actcatggtcagaagggaggaagtcgtcaaggatcatcactgcgctga

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