KEGG   Physeter macrocephalus (sperm whale): 102989004
Entry
102989004         CDS       T06011                                 
Symbol
TYR
Name
(RefSeq) tyrosinase isoform X1
  KO
K00505  tyrosinase [EC:1.14.18.1]
Organism
pcad  Physeter macrocephalus (sperm whale)
Pathway
pcad00350  Tyrosine metabolism
pcad01100  Metabolic pathways
pcad04916  Melanogenesis
Module
pcad_M00042  Catecholamine biosynthesis, tyrosine => dopamine => noradrenaline => adrenaline
Brite
KEGG Orthology (KO) [BR:pcad00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00350 Tyrosine metabolism
    102989004 (TYR)
 09150 Organismal Systems
  09152 Endocrine system
   04916 Melanogenesis
    102989004 (TYR)
Enzymes [BR:pcad01000]
 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
     102989004 (TYR)
SSDB
Motif
Pfam: Tyrosinase EGF_laminin Nup188_SH3-like TM_ErbB1
Other DBs
NCBI-GeneID: 102989004
NCBI-ProteinID: XP_007111292
Ensembl: ENSPCTG00005006804
UniProt: A0A2Y9F036
LinkDB
Position
16:complement(44127364..44235933)
AA seq 530 aa
MLLAALYCLLWTFQTSAGHFPRACASSKNLMEKECCPPWEGDGSPCGQLSGRGSCQDIIL
SKAPLGPQFPFAGVDDRESWPSVFYNRTCQCFGNFMGFNCGNCKFGFWGPTCTERRLLVR
RNIFDLSVPEKNKFLAYLTLAKHTTSPDYVIPTGTYGQMNNGSTPLFNDINIYDLFVWMH
YYVSRDALLGGSEIWRDIDFAHEAPGFLPWHRLFLLLWEKEIQKLTGDENFTIPYWDWRD
AENCDICTDEYMGGRNPANPNLLSPASFFSSWQVICSQLEEYNSRHSLCNGTSEGPILRN
PGNHDKARTPRLPSSADVEFCLSLTQYESGSMDKAANFSFRNTLEGFASPLTGIADASQS
SMHNALHIYMNGTMSQVPGSANDPIFLLHHAFVDSIFEQWLRRHHPLQEVYPEANAPIGH
NRESYMVPFIPLYRNGDFFISSRDLGYDYSYLQDSGPDSFQDYIKPYLEQASQIWPWLIV
AAVVGSVLTAVLGGLTSLFCHRKRKQLPEEKQPLLMDKEDYHSLLYQSHL
NT seq 1593 nt   +upstreamnt  +downstreamnt
atgctcctggctgctttgtactgcctgctgtggactttccagacctctgctggccatttc
cctcgagcctgtgcctcctctaagaacctgatggagaaggaatgctgcccaccatgggag
ggtgacgggagtccctgtggacagctttcaggccggggttcctgtcaggacatcattctg
tccaaggcaccgcttggacctcagttccccttcgcaggggtggacgaccgggagtcttgg
ccctccgtcttttataatcggacctgccagtgctttggcaacttcatgggattcaattgt
ggaaattgtaagtttggcttttggggacccacctgcacagagaggcgacttttggtgaga
agaaacatttttgatttgagtgtcccagagaagaacaaatttcttgcctacctcacttta
gcaaaacatactaccagcccagactatgtcatccccacaggcacctatggccaaatgaat
aatggatcaacacctctgtttaatgacatcaacatttatgacctctttgtctggatgcat
tattatgtgtcaagggacgcactacttgggggctctgaaatctggagagacattgatttt
gctcatgaagcaccaggtttcctgccttggcatagactcttcttgctgctgtgggaaaaa
gaaatccagaagctcacaggggatgagaacttcactattccatactgggattggcgagat
gcagaaaattgtgacatttgcacagatgagtacatgggagggcgcaaccctgcaaaccct
aatctactcagcccagcatccttcttctcctcttggcaggtcatctgcagccaattggag
gagtacaacagccgtcactctttatgcaacgggacgtccgagggaccgatactgcgcaat
cctggaaaccacgacaaagccaggaccccaaggctcccctcctcagctgatgtggaattt
tgcctgagtctgacccagtatgaatcgggttccatggataaagctgccaacttcagcttt
agaaatacactggaaggatttgctagtccacttactgggatagcagatgcctcacaaagc
agtatgcacaatgccttgcacatctacatgaatggaactatgtcccaagtaccaggatct
gccaatgatcccattttccttcttcatcatgcatttgttgacagtatttttgaacagtgg
cttcgaaggcaccatcctcttcaagaagtttatccagaagccaatgcacccattgggcac
aaccgggaatcctacatggttccttttatacctctctacagaaatggtgatttctttatt
tcatccagagatctgggttatgactatagctacctacaagattcaggaccagacagtttt
caagattacattaaaccctacttagaacaagcaagtcagatctggccatggctcatagtg
gcagccgtggtagggtctgtcctcactgctgtgctgggaggactcactagcctgttttgt
catcgaaagagaaagcagcttcctgaagaaaagcagccactccttatggacaaggaggac
taccacagcttgttgtatcagagccatttataa

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