KEGG   Salmo trutta (river trout): 115173621
Entry
115173621         CDS       T08542                                 
Name
(RefSeq) tyrosinase-like
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
stru  Salmo trutta (river trout)
Pathway
stru00350  Tyrosine metabolism
stru01100  Metabolic pathways
stru04916  Melanogenesis
Module
stru_M00042  Catecholamine biosynthesis, tyrosine => dopamine => noradrenaline => adrenaline
Brite
KEGG Orthology (KO) [BR:stru00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    115173621
 09150 Organismal Systems
  09152 Endocrine system
   04916 Melanogenesis
    115173621
Enzymes [BR:stru01000]
 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
     115173621
SSDB
Motif
Pfam: Tyrosinase EGF_laminin
Other DBs
NCBI-GeneID: 115173621
NCBI-ProteinID: XP_029587750
Ensembl: ENSSTUG00000037973
LinkDB
Position
34:complement(12943654..12948958)
AA seq 542 aa
MRLLLIHSVFFLQCVRFSQQQFPRLCATTEALLSKECCPVWEGDGSACGASSGRGFCRDV
EVSDLPNGLNYPFSGLDDRERWPLVFYNRTCQCASNYMGFNCGECQFGLFGANCEERRES
MRRNLFHLSAAERRKLISYLNLAKHTVSQDYVIATGTYREMNNGSTPLFSDVSTYDVFVW
MHYYVSRNALLGGPGNVWTDVDFAHWAPAFLPWHRVYLLHWEREIRKLTGDFEFSIPYWD
WRDAQGCDVCTDDLMGAQSPRDPNLISPASVFSSWRVMCSRAEDYSVRGVLCDGNDEGPL
LRNPGNHDHNLVVRLPTAAEVEFTVSLRDYDTGAMDRSANFSFRNTLEGFGNPQTGLGNS
VVMGMHSSLHIFMNGSMSSVQGSANDPIFLLHHAYVDSIYEQWLRRHAPEQTHYPESNAP
IGHNRQYHMVPFIPLHRNIEYFTSSKELGYQYSYMLNSDQRISEVLSPYLELMMEAWLWL
LGALVLGALVTMTVAAVAATMTRVCWGAWPWQHAEKSSAVHLPEREPLIISSDGDIPNYH
TV
NT seq 1629 nt   +upstreamnt  +downstreamnt
atgcggctcctgctcatccacagtgtgtttttcctccagtgtgtgcggttctcccagcag
cagtttcccaggctctgcgccacaacggaggccctgctctctaaagagtgctgcccggtc
tgggaaggggatggttcggcctgcggggccagctctggcagggggttctgccgggacgtg
gaggtatcggatctccccaacgggctgaattaccccttctccggcttggacgacagagag
aggtggcctctggtattttataaccggacctgccagtgtgcctccaactacatggggttc
aactgcggagagtgccagttcggactgtttggggctaactgcgaggagaggagagagtcc
atgcggaggaacctgtttcacctgtcggcagcggaacggcggaaactcatctcttacctc
aacctggccaagcacaccgttagccaggattacgtcatagccaccgggacctaccgggag
atgaataacgggagcaccccgctgttctctgatgtctcaacctatgacgtgtttgtgtgg
atgcactactatgtctcgaggaatgctcttctcggtggaccggggaatgtctggaccgat
gtggacttcgcccactgggctcccgcctttctgccgtggcaccgtgtgtacctgctgcac
tgggagcgcgagatccgaaaactgaccggggactttgagttctccatcccgtactgggac
tggcgggacgcgcagggctgtgacgtctgcaccgacgacctgatgggcgcccagagcccg
cgagaccccaacctcatcagccctgcttcagtgttctcttcctggagggtgatgtgttcg
cgggcggaagactacagtgtgaggggggttctgtgtgacggtaacgacgaggggccgttg
ctgcgtaaccctggcaaccacgaccataacttggttgtgcggttgccgacggcagcagag
gtggagttcacggtcagtctccgtgactacgacacgggagccatggaccgctccgctaac
ttcagcttcagaaacacactggaaggttttgggaaccctcagacaggcctgggtaacagt
gtggtgatggggatgcactcctctcttcatatcttcatgaacggctccatgtcttcagtc
cagggttcagctaacgaccctattttcctactgcaccacgcctacgtagacagtatctat
gagcagtggttgaggagacatgctccagagcagacccactacccagagtccaatgctccc
attggccacaacaggcagtaccacatggtgcccttcatacctctacacagaaacatagaa
tactttacctccagcaaagaactggggtaccaatactcctatatgctcaactcagatcag
aggatatcggaggttctcagtccttacctggagctgatgatggaggcgtggctctggttg
ctaggggcgttggtcctgggggcgctggttaccatgactgtggctgcagtagctgcgact
atgacccgggtgtgttggggtgcgtggccatggcaacacgcagagaagagttcagcggtc
cacctaccagagagggaacctctcatcatcagcagtgatggtgatatccccaactaccac
actgtttag

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