KEGG   Eleginops maclovinus (Patagonian blennie): 134880315
Entry
134880315         CDS       T09869                                 
Symbol
tyr
Name
(RefSeq) LOW QUALITY PROTEIN: tyrosinase
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
emac  Eleginops maclovinus (Patagonian blennie)
Pathway
emac00350  Tyrosine metabolism
emac01100  Metabolic pathways
emac04916  Melanogenesis
Module
emac_M00042  Catecholamine biosynthesis, tyrosine => dopamine => noradrenaline => adrenaline
Brite
KEGG Orthology (KO) [BR:emac00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    134880315 (tyr)
 09150 Organismal Systems
  09152 Endocrine system
   04916 Melanogenesis
    134880315 (tyr)
Enzymes [BR:emac01000]
 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
     134880315 (tyr)
SSDB
Motif
Pfam: Tyrosinase EGF_laminin LapA_dom
Other DBs
NCBI-GeneID: 134880315
NCBI-ProteinID: XP_063763271
LinkDB
Position
18:complement(9823377..9827829)
AA seq 540 aa
MRNLYISVVLLQLIGTCLCQYPRPCANSEGLRTKECCPVWDGDGSACGAMSGRGFCTEVE
VSEEPHGPQYPHSGIDDRERWPLAFFNRTCHCAGNYGGYNCGECRFGYWGSNCAEYRESV
RRNILTMSPAEQQKFISYLNLAKNTINRDYVISTATRAEMGENGENPMFSDINSYDLFVW
MHYYVSRDAFLGGPGNVWRDIDFAHESAAFLPWHRVYLLHWENEIRKLTGDFNFTIPYWD
WRDAQTCEVCTDALMGGRSPLNPNLISPASVFSSWKVICTDPEEYNSREALCNATGEGPL
LRNPGNHDRNRVPRLPTTADVDFTVGLSEYESGSMDRFANRSFRNVVEGFASPTSGMAVP
GQSTMHNALHVFMNGSMSSVQGSANDPIFLLHHAFIDSIFERWLRTHQPLRTHYPRSNAP
IGHNDGYYMVPFMPLXRNGDYFLSNKALGFEYAYLLDPGQRFVQEYLTPYLEQAQQIWQW
LLGAGILGALIAAILAAVLIVARRKWKRNQRRKRVPSFGERQPLLQSSSEEGSSSYQTTL
NT seq 1623 nt   +upstreamnt  +downstreamnt
atgaggaacttgtacatatctgtagttctgctgcagctcatcgggacttgtttatgccaa
taccctcgcccttgcgccaactcagagggactacggaccaaagagtgttgtccggtgtgg
gatggtgatggctcagcttgtggtgccatgtcaggccgtggtttctgcacagaggtggag
gtctccgaagagcctcatgggccccagtacccacacagtgggattgacgacagagagcgt
tggcctttagctttctttaaccggacttgtcattgtgctggaaactatggaggttataat
tgcggcgaatgcaggtttggttactggggttcaaactgtgctgagtacagggagtctgtg
cgcaggaacatcctgaccatgtcaccggctgagcaacagaagttcatctcttatctgaac
ctggcaaagaataccatcaaccgtgactatgtgatctcaacggcaacaagagcagagatg
ggtgaaaacggtgagaaccccatgttctctgacatcaactcctatgatctgtttgtgtgg
atgcactactacgtgtcccgggatgccttcttgggagggccagggaacgtgtggagagac
attgactttgcccatgaatctgctgcatttctaccctggcaccgagtctacctgctccac
tgggagaatgagataagaaagctgactggagattttaacttcaccattccatactgggac
tggagggatgcccagacctgtgaggtatgcaccgacgctctgatgggcggccgcagcccc
ctcaatcccaacctcatcagccctgcttcagtcttctcctcatggaaggtgatctgcacc
gatcccgaagagtacaacagtagagaggccttgtgtaacgccacaggagagggtccattg
ctgcgcaacccaggcaaccatgaccgcaaccgtgtgccgagactccccacaacagctgat
gtggatttcactgtgggcctctctgagtacgagtcgggatccatggacagattcgccaat
aggagcttcagaaacgtcgtagagggctttgccagtccgacgtcaggtatggcagtgcca
ggccagagcaccatgcacaacgccttgcatgtcttcatgaacggctccatgtcctcagtg
cagggttcagccaacgaccccatattcctgctgcaccatgcttttattgacagcatcttt
gagcgctggctcagaacccaccagcctctccgcacccactacccacgttccaatgccccc
atcggccacaatgatggttactacatggtgcccttcatgcctctgnttagaaacggagac
tacttcctgtccaataaggctctaggatttgagtatgcctacctgttggaccctggccag
aggtttgttcaggagtatctgacgccatacctcgagcaggcccagcaaatctggcagtgg
ctgctgggagctgggatcctcggggcattgatcgctgcaatacttgctgcagtgcttatt
gttgcgagaaggaagtggaagcgtaaccagaggaggaagagggtgccgagctttggagag
agacagccattactgcagagcagctcagaggaaggctcatcttcatatcagactactctc
taa

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