Entry
Symbol
Dsim_GD13141
Name
(GenBank) uncharacterized protein, isoform B
KO
K15501 serine/threonine-protein phosphatase 6 regulatory subunit 3
Organism
Brite
KEGG Orthology (KO) [BR:dsi00001 ]
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:dsi01009 ]
Dsimw501_GD13141 (Dsim_GD13141)
09182 Protein families: genetic information processing
03400 DNA repair and recombination proteins [BR:dsi03400 ]
Dsimw501_GD13141 (Dsim_GD13141)
Protein phosphatases and associated proteins [BR:dsi01009 ]
Protein serine/threonine phosphatases
Phosphoprotein phosphatases (PPPs)
Protein phosphatase-6
Regulatory subunits
Dsimw501_GD13141 (Dsim_GD13141)
DNA repair and recombination proteins [BR:dsi03400 ]
Eukaryotic type
DSBR (double strand breaks repair)
Other DSBR factors
Protein phosphatase 6
Dsimw501_GD13141 (Dsim_GD13141)
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
3L
Genome browser
AA seq
967 aa AA seq DB search
MFWDKGYAPSANIEALLEKENSTLEEFLDEEDILQECKTQKKNLVNYFTRPDVIRRLVEL
ITTEPSEDVPMSKRFRYANMSCEILTLGLPSLDEKLLNDAETLQLLYSYLEKEPPLNPLL
SSFFSKTFSMLFTKKPEQDWFLYQHMCLQLLEYIKSQKTFLDFICKHFDTPVIPDLIMQM
MKDIEGGRLKRNLFEWLTEDKIVERLIAILRNPQETDKHANVADFFCDLINQGRLMRQTE
QENDSFEPAFDGSNPILKTIEFADTIEALLNVILEPNAQESAILSGISVVLTLIKPITFT
DEPNSDRQRLLQKREREIHQEVQETVINVMAPRLQEFVHILKNPPAKPTLETTAAVLTPP
FGKTRLQVCRVFTALLETKHETIQQAICATEYFSLLLDFFKQYCWNNFLHTETEKALNVV
FYNELSNNNTASTEVTDYFTADCLINAFLKVGTEESEVEIKNALNDAKRAEGGKDEEGGD
IEIEVAAAQEVAAQTPDERQATAEENQEHEEHTGHVEAAAEAKASEGAEPQVQDNHAKNS
EVDGESPTEQQESEATLNDLDKTKTVPSPPPSEMQSHLIVNCRLISKLVDLWQHNAQAQN
AEKGRRLGYMGHLIKILRHITNCISESEHIGDLITSSLSDEDEVKLWQSLIDAETGEFSL
AVKQQTKLLADCNPHEENQYNDGSNDYTGEINAWNVDQNRFQFGRNIDDEDDDDDEHGDH
SGGGDGHGHGMFTKNSNTLNNLADPWDIQFAVLSSVPSQVNTGTANWGTDFNSDNFADFD
AHFSTFGSDLGMPISAPPGEEEEEDSSPALASDTQVNPEEERQPAESIGLAVGKGAQDNL
ACTDDQQAEYDNNANVEKAISDKLAESSVVETAAIVTRLQSVLLDGEDDYEDDEGMWTKP
LGADRPADTEQITPISNGPDSKVNEFNHANDISSNNVDGHEANITTEQQKLAAAAKTNNV
EIATTTT
NT seq
2904 nt NT seq +upstream nt +downstream nt
atgttttgggacaagggttatgcgccctccgcgaatatagaggcgctgctcgagaaggag
aactccacgctggaggaatttctggacgaggaggacatactgcaggagtgcaagacgcaa
aagaagaacctggtcaactactttacacgtcccgatgtcatacggcgtctggtggagctg
atcacgaccgagccctctgaagatgtgcccatgtcgaagcgtttccgctatgccaacatg
tcctgtgagatactcacactcggcctgccgtccctggatgagaagctactgaacgacgcg
gagacgctgcagctgctgtattcatatctggaaaaggaaccaccgttaaatccattgcta
tcgtcgttttttagcaaaacgtttagcatgctctttaccaaaaagcctgaacaagattgg
tttttgtatcaacacatgtgcctacaactcctggagtatattaaatcgcagaagaccttt
ttggatttcatttgtaaacactttgacacaccggtcatacctgatctaataatgcagatg
atgaaggacatcgagggtgggcgactcaagcggaaccttttcgaatggctaactgaagat
aaaattgttgagagactgattgcaatattgcgtaatcctcaagaaaccgacaaacatgca
aatgttgccgactttttctgtgatcttattaaccaagggcgcctaatgcgccagaccgag
caggagaacgattcgtttgagccggccttcgatggatccaaccccattctgaagacgatc
gaatttgcggacacaattgaagccttgttaaatgtgattttggaaccaaacgctcaggag
agcgccatcttatcaggaatatcggttgtacttacgctaatcaagccaattaccttcaca
gatgagcccaactcggatcgccagcggttgttacaaaagcgcgagcgcgaaatccaccag
gaagtccaggagactgtgatcaatgtgatggcgccacgcctccaggaatttgtccacata
ctgaaaaacccgcctgcgaaacccacactagaaaccacggccgccgtgttgacgccccca
tttggaaagactcgactgcaagtgtgtcgcgtgttcaccgctctgctggagaccaagcat
gagactattcagcaggcaatctgcgcgactgagtacttcagcctgttgctggactttttc
aagcagtactgctggaacaacttcctgcacacagaaacggagaaggcactgaatgtggtc
ttttacaacgagctgtccaacaacaacactgcatccacggaggttacggattacttcact
gcagactgcctgatcaatgcctttttgaaggtgggcacggaggagtccgaagtcgagata
aagaacgctcttaacgatgcgaagcgggcggagggcggcaaggatgaggaagggggcgac
atcgaaatcgaagtggcagctgcgcaggaagtggctgcccagacgcctgatgagcgtcag
gcaaccgcagaagaaaaccaagagcatgaagaacacacgggccatgtggaagccgcagcc
gaagcaaaagcttctgagggcgcagaacctcaagtccaggataatcatgcgaaaaatagt
gaggtggatggtgaatctccaacagaacagcaggaatcggaggcaacgctcaatgatctc
gacaagaccaagaccgttcccagtcctccgccttctgaaatgcaatcacatttaattgta
aactgtcgtctgatatccaaactggtcgatttgtggcagcacaatgcgcaggcgcaaaat
gctgagaagggtcgacgcctgggctacatgggccaccttatcaaaattctgcgtcacatt
acgaattgtatatcagaatctgaacatatcggtgatctgatcaccagcagcctaagtgat
gaagatgaggtcaagctgtggcaatcgttgatcgatgcggaaactggcgagttttcgctg
gcggttaaacagcagaccaagctcctggccgactgcaatccgcacgaggagaatcagtac
aatgatggatccaatgactatactggcgagataaatgcgtggaacgttgatcagaaccgg
ttccagtttggtcgaaacattgacgacgaagatgatgacgatgatgagcatggtgaccac
tcgggcggtggtgatggccatgggcacggcatgttcaccaaaaattcgaacacgctcaac
aacttggctgacccctgggacatccagtttgccgtcctttccagcgtgccttcgcaggtt
aacacgggcactgccaactggggcacggatttcaattcggataactttgccgactttgat
gcgcactttagcacctttggcagcgatcttggtatgcccataagtgcgccgccaggtgaa
gaggaagaggaggactcttccccagcgctggcatccgatacacaggtgaacccagaggag
gagcgccaacccgctgaatctattggactcgctgtgggcaagggcgctcaggataatcta
gcgtgtaccgacgatcagcaggctgagtacgacaataatgccaacgtggagaaggccatc
agcgataagctggccgagtcgagcgtggtggagactgcagcaattgttactcgactgcaa
tccgtactgctggacggcgaggatgactatgaggacgatgagggaatgtggaccaagcca
ctgggtgcggatcgtcctgcggacaccgagcaaattactcccatttcaaatggacccgac
agcaaagtgaatgaattcaatcatgccaacgatatcagcagcaacaacgtggatggccac
gaagccaacatcacaacggagcagcagaaattggccgctgccgccaagacgaacaatgtt
gaaattgcaactacgaccacataa