KEGG   Xenia sp. Carnegie-2017 (soft corals): 124456338
Entry
124456338         CDS       T08024                                 
Name
(RefSeq) uncharacterized protein LOC124456338
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
xen  Xenia sp. Carnegie-2017 (soft corals)
Pathway
xen00350  Tyrosine metabolism
xen01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:xen00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    124456338
Enzymes [BR:xen01000]
 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
     124456338
SSDB
Motif
Pfam: Tyrosinase VWA VWA_2 AAA_21 IFNGR1_transm
Other DBs
NCBI-GeneID: 124456338
NCBI-ProteinID: XP_046862769
LinkDB
Position
Unknown
AA seq 536 aa
MTHTDKIQDLGVRYSYGTVLHNAIDDEGKLEDDFSFMDFRDEISKRAPSSAVGIYKSLKH
SFISLAKPNAKISVSRRRRSRSWFWSSRRRRFSRVSRRTASSNFNPRKDMVFVMDRSGSV
GRHHFNLQKTFIKQLIEYFDISRSKTLVAIVTFASNVKLEFDFNKYPNKECLRNGIKNIR
YTGGLTATGPALHYVLNNLIMSHSTGARNPPLVTTSISKTELNSIASKPDFVYYVTNGYS
TLSTVIRKLKKGLSTKCKYGKDNCRIRKEFNDLTNVERIRYITTVKTASTISKYKRKYER
LLTIHRTIFSGYNIHRKQFFLPWHRWFILQYENLLREIDCRVTVPYWDWSQEAGRPFSSS
VWSASSAGLGDDGSPSTNCVKTGPFRDSQWSLPLSSGENDRCLKRRFRGRVPNAAAVKEL
LKRPSIQFHNFEMSLRRFFHDSVHCNIGGTMCSNNSAFAPEFFLHHGFVDKLWWDWQNKG
SSFKFHSYFQLQNSLMSQTSHRPRDLTDLSKQPDCVCVKYKKKTGVQKYQSWMEVL
NT seq 1611 nt   +upstreamnt  +downstreamnt
atgacccatacagataagattcaggatttaggagtaaggtacagttacggaacagttttg
cataatgctattgatgatgaaggcaaactggaagacgatttttcgtttatggactttcgc
gatgaaatatctaagagagcaccaagcagtgctgtgggaatctataagagcctgaaacac
tccttcataagtcttgcaaaaccaaacgctaaaataagcgtttctagaagaagaagatca
cgttcttggttctggagttctagacgacgacgtttcagtcgtgtgtcaagaagaacagct
tcatcaaatttcaaccctcgcaaggatatggtctttgttatggatagatcgggaagtgtt
ggtcgacaccattttaacttacagaaaacgtttatcaaacaacttatcgagtactttgat
atttctcgatctaaaactttggtcgccatcgtcacatttgcaagtaacgttaaactggag
ttcgattttaacaaatatcctaacaaggaatgtttaagaaatgggattaaaaacattcga
tacactggaggcctcactgcaaccggacctgcacttcattacgttctaaacaatttgata
atgagtcattctactggtgccagaaatccgcccctggtcacgacaagcatctctaaaact
gaactcaattccattgcatcaaaaccagacttcgtttattacgtcacaaatggatattct
acattgagtactgtaattaggaaattaaagaaaggtctgtccaccaaatgtaaatatgga
aaagataattgtcgaattcgaaaggagtttaacgacctgacaaacgttgagcgtattcgc
tatataacaacagttaaaacagcatcgaccatctctaaatacaaaagaaagtacgagcgc
cttctaactattcacagaaccatcttctctgggtataatattcaccggaagcaattcttt
cttccttggcatcgttggtttattttacaatacgagaatcttttgagagaaatagattgt
cgcgtgaccgtgccgtattgggactggagccaagaggctgggagaccgttttccagctct
gtgtggagtgcgagcagcgctggattgggagatgatggatcaccatcgacgaactgcgtt
aaaacagggccatttagggacagtcaatggtctctaccattgagctctggtgaaaatgat
agatgtctcaagaggcgatttcgtggtagggtacccaatgcagcggcggtaaaggaacta
ttgaaaagaccctcaattcagtttcacaattttgaaatgtctctccgtagattttttcac
gacagtgtccattgcaatataggtggaacaatgtgctcaaataattcagcgtttgctcca
gaattcttccttcatcatggctttgtcgataaactctggtgggattggcagaataaagga
agctcgttcaagtttcactcatattttcaactacaaaattcgttgatgtcgcagacttct
catcgcccgagagatttaactgatttaagcaaacagcctgattgcgtatgcgtaaaatac
aaaaaaaaaacaggtgttcagaaatatcagagttggatggaggttctctag

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