Entry
Symbol
CDEST_13034
Name
(RefSeq) Putative tyrosinase copper-binding domain, di-copper centre-containing domain superfamily
KO
Organism
cdet Colletotrichum destructivum
Pathway
cdet01110 Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:cdet00001 ]
09100 Metabolism
09105 Amino acid metabolism
00350 Tyrosine metabolism
87949534 (CDEST_13034)
Enzymes [BR:cdet01000 ]
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
87949534 (CDEST_13034)
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
8:complement(join(3900539..3900712,3900783..3901137,3901196..3901555,3901606..3901703,3901756..3902103,3902174..3902503,3902557..3902705,3902761..3902968))
Genome browser
AA seq
673 aa AA seq DB search
MSAETPQHEFVVIQGIPVPPGEKPGLRKEFTKWATEKPEENIQVSLFIRALQLLYNEDYT
KTLSYFQIAGIHGYPGTVAWDNSAEPTHKSRDEKQHFIYCTHNSLTFPTWHRPYMALFEQ
TIYQFMGKVIEKLHFSSEAEKNVWIKESTRWRLPYWDWALNTEVPDLFRPTTVKIRAPLG
PDGLQSEPEIVPNPLYRYELRVKGKVTKMGALPAPFTVDDVVFDGQRFPWSRCSGTSRWA
IKSSDPDESQSLGINNYENIGIAIREHGYYDPFLKLKDPKNVKDLEHLDDPVRELRKHPV
SDLVYRLLSNVKDWASFSSTITAEEDKPKDWEQWISLEYIHNNLHGFIGGFGGFNEGIGH
MMNVPAAAFDPIFYMHHCNIDRLFAIWQVLHENSWFKDIKGPPATDSLTPFHHSQADYFD
SNRARTWLNLGYQYDVLQRDDHETDDKYLERINAYVGKTYRSTGSVLLEDKGDLFQKNQD
LASDEMYDDYMINVSYDRYGYKNGAPYTIHFLLEDLSTQGTATESDTSSPRPHRHVGSIF
TFSSPVTSGEVHTAGHPRCGNCAQQLEEGVLSRASIPLTISLYKDATNQKIDGIRDLGPD
NVEPYLCDRLTWVAKSTDGSTIPWSELNRTKVYVFKGKAKHYTKIGRLSVYQDYEPLSRV
THGKDAGASHEEY
NT seq
2022 nt NT seq +upstream nt +downstream nt
atgtccgccgaaaccccccaacatgaatttgttgtcattcaaggcattcctgttcctcca
ggagaaaagcctggactccgcaaagagttcacgaaatgggcaacggaaaagcccgaggag
aacatccaagtctccctcttcatccgggcactccagttgttgtacaatgaagactacacc
aagactctttcctacttccagatagccggtatccacggttacccaggaaccgttgcctgg
gataattctgccgagcctacgcacaagagcagggatgagaagcaacattttatctactgt
acccacaactcactcacttttcccacatggcacagaccttacatggctctgttcgagcaa
acaatctaccagttcatgggcaaagtaattgaaaagctacatttcagcagtgaggccgag
aagaacgtctggatcaaggaatcgactcggtggagactgccttactgggactgggccctc
aacaccgaggttcccgacctgttcaggccaaccacagtgaagattcgcgcacctttgggg
ccagatggcctacagtcggagccagagatcgtcccgaaccctttgtaccgatatgagttg
agggtaaaggggaaagtgaccaagatgggagctttgccggcacccttcactgtcgatgac
gtggtcttcgatggacagagatttccgtggtctcgatgctcgggcacaagcagatgggcc
atcaagagctctgatcccgatgaatctcaatctctaggtatcaataactacgagaacatc
ggcattgccatcagagagcatggttattatgacccttttctgaagctcaaggaccccaaa
aatgtcaaggatcttgagcatcttgatgatcctgttagggaactaagaaagcatcccgtc
agcgacttggtctatcgacttctttccaacgtcaaagactgggcctccttctcttccacc
atcaccgccgaagaggacaaacccaaggactgggaacagtggatttcgctcgagtatatt
cacaataacctccatggtttcattgggggcttcggcggcttcaacgaagggatagggcat
atgatgaacgtgccggccgcggccttcgaccctatcttctacatgcaccattgcaacatt
gaccgcctcttcgcaatctggcaggtcttgcacgagaacagttggttcaaggacatcaag
ggaccgccagccaccgactctctcacacctttccatcacagccaagctgactacttcgat
tccaaccgcgcccgtacatggctgaatttgggctatcaatatgacgtgttgcagcgtgat
gaccacgagacagatgacaaataccttgaacgcatcaatgcctacgttggcaaaacatac
cgcagcacgggaagtgtcctgctcgaagacaaaggtgatcttttccaaaagaaccaagat
ctcgcaagtgacgaaatgtatgacgactacatgatcaacgtcagctatgaccgctatggt
tacaaaaatggcgccccttacacgattcattttctgcttgaggatctttccacccaagga
acggctactgagagcgacacaagttctccgcgacctcaccgtcacgtcggcagcatcttc
actttcagtagccctgtcaccagcggcgaggtgcatactgcgggccatccgcgatgtggt
aactgcgcacaacagctcgaggaaggcgtcctctcacgggcctctatcccgttgactata
tcgctctacaaggatgctaccaatcagaagattgatggaatcagagaccttggcccggac
aatgttgagccatatctttgtgataggctgacctgggtggccaaatcgacggatggttca
actatcccctggagtgagctgaacaggacaaaggtgtatgtgttcaagggcaaggccaaa
cactacaccaagatcggaagattgtccgtctaccaagattatgagcctctgtctcgtgtg
acccacggcaaggatgccggtgcttctcacgaggagtattag