Entry
Symbol
ppp4r1l
Name
(RefSeq) serine/threonine-protein phosphatase 4 regulatory subunit 1 isoform X1
KO
K15424 serine/threonine-protein phosphatase 4 regulatory subunit 1
Organism
cclu Coregonus clupeaformis (lake whitefish)
Brite
KEGG Orthology (KO) [BR:cclu00001 ]
09180 Brite Hierarchies
09181 Protein families: metabolism
01009 Protein phosphatases and associated proteins [BR:cclu01009 ]
121575596 (ppp4r1l)
09182 Protein families: genetic information processing
03400 DNA repair and recombination proteins [BR:cclu03400 ]
121575596 (ppp4r1l)
Protein phosphatases and associated proteins [BR:cclu01009 ]
Protein serine/threonine phosphatases
Phosphoprotein phosphatases (PPPs)
Protein phosphatase-4
Regulatory subunits
121575596 (ppp4r1l)
DNA repair and recombination proteins [BR:cclu03400 ]
Eukaryotic type
DSBR (double strand breaks repair)
HR (homologous recombination)
Protein phosphatase 4
121575596 (ppp4r1l)
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
10:57059356..57116086
Genome browser
AA seq
965 aa AA seq DB search
MAGLSLYFEDGHDDLDDFGFDDYGSECDGIRITAFLDAGQDNLTPLGRLEKYAFSENVFN
RQIVARGLLDVLREFSDNENDFISVMETVARMSEDGEPTVRAELMEQVPNIAMFLHESQP
NFPAAFSRYLVPIVVRYLTDPNNQVRKTSQAALLVLLEQGLICKGDMETKVCPVLLDLTE
PSSDDDYKIEAVAIMCKLVTMLSKDTVEHLLLLRFCELCSDARLFQVRKVCAANFGEFCS
IVGQDATEKLLMSKFFDLCSDSLWGIRKACAECFMIVSNSTSPEVRRTKLSPLFISLISD
QSRWVRQAAFQSLGRFISTFANPSSTGLYFKEDGTLLEIPRCPFDRDSHLCIESSMHCSF
NGTTERPSHTPINQDGRSTPSVECMSGGDSGGDSTHTPPRDRHEGQERNNNNNPPPTNNK
NKETEQTDENFNSFHYWRPPLPDISEELEILKDEGPLQNQTKGEKKEEMVLEDGEMEGKK
EMASLEPVTSSQIQKVLDCLQPHMDDPDAQAQVQVLSAALKAAQLETQSEETESQSESQP
PEDEDGEGEPDEEFSKNGGTAEEEQAHKEPPQQTTDSAPIESQESSPDSPVLVRDDSDHS
SVESELIESVEEEGKEDSAPNQVCEEEEEEKSKVQNVIPQQLLDQYLSMTDPARAQTVDT
EIAKHCAFSLPGVALTLGQQNWHCLKDTYETLATDVQWKVRRTLAFSIHELAVILGDQLT
AADLVPIFNGFLKDLDEVRIGVLKHLYDFLKLLHAEKRREYLYQLQEFMVTDNSRNWRFR
YELAEQLILIIELYSHYDVYDYLRQIALTLCSDKVSEVRWISYKLVVEILQKMYACGAHD
LGLNFINELIVRFCHCPKWVGRQAFAFICQAIVEEDCMPMDQFAQHLLPSLLSLSSDPVA
NVRVLVAKALRQSVMEKAYFKEPGSAYSDELEETVMALQADKDRDVRFFASQDPNMALMD
TAALI
NT seq
2898 nt NT seq +upstream nt +downstream nt
atggcaggtctgtctttatattttgaagatggtcatgatgatttggatgactttgggttc
gatgactatggatcagagtgtgatggaattcgcatcacagctttcttggacgcagggcaa
gacaatctcacccccctggggagactagagaaatatgccttcagtgaaaacgtcttcaac
aggcagatcgtggcacgcgggctgcttgatgtgcttcgagagttcagtgacaatgagaat
gactttattagtgtcatggagacagttgcccgaatgtcagaagacggagagcccaccgtg
cgcgccgagctgatggagcaggtgcccaacatcgccatgttcctacacgagagccagccc
aacttcccagcagccttctccagatacctggtgcccatcgtggtgcgctatctcacagac
cccaataaccaggtgcggaagaccagtcaggcggccctgctagtgctgttagagcagggc
ctcatctgcaagggcgacatggagaccaaagtgtgtcctgttctactagacctcaccgag
cccagcagcgacgacgactacaagatagaggctgtcgcgatcatgtgtaagctggtaacc
atgctgagcaaagacacagtggagcacctgctgctgctgcgcttctgtgagctgtgcagt
gatgccaggctcttccaagtccgcaaggtgtgtgcagccaatttcggagagttctgttcc
attgtgggtcaggatgccacagagaaactactgatgtccaagttctttgacctgtgctcg
gatagcctgtggggcatccggaaggcgtgcgcagagtgcttcatgatcgtctccaactcc
acctcccccgaagtgcgacgcactaaactgtcccccctcttcatcagcctcatcagtgac
caatcacgctgggtgcgccaggctgcctttcagtctctgggacgcttcatctccaccttt
gccaacccctccagcacaggcctctacttcaaagaggacggcacactactggagatcccc
aggtgtccttttgacagagattcccacctctgcatcgagtcctccatgcactgctccttc
aacggcaccacagagagaccctcgcacacacccatcaaccaagatggccgctccacccca
tccgtagaatgcatgtccgggggagacagcggcggcgactccacacacactcctccccga
gaccgacacgaaggccaggaacgcaacaacaacaacaaccctcctcccacaaacaacaaa
aacaaggagacggaacaaacagacgagaattttaactctttccactactggaggcctccg
ttaccggatatcagcgaggagctggagatactgaaagacgagggtcctctgcagaaccag
acgaagggagagaagaaggaggagatggtgctagaggacggggagatggagggaaagaag
gagatggctagtctggagccagtcaccagctctcagatccagaaggtgttggactgcctc
cagccccacatggacgaccccgatgcacaagcccaagtgcaggtgctctcggccgccctg
aaggctgcccagctggagacccaatctgaggagacggagagtcagtcagagagccagcca
ccagaggatgaggatggggaaggggaaccagacgaggagttctccaagaacggagggacc
gctgaggaggaacaggcacataaggagcctccccagcagaccactgattcggcacccata
gagtctcaggaatcatcccccgactcgcctgtccttgtacgggacgactcggaccacagc
agtgtggagtcggagctgatcgagagtgtggaggaagaggggaaggaggactctgctccc
aaccaggtgtgtgaggaggaggaggaggagaagtccaaggtccagaatgtgattccacag
cagctgctggaccagtacctttccatgacggacccggcacgagcccagacggtggacaca
gagattgccaagcactgtgcgttcagcctgcccggcgtagccctcaccctgggccaacag
aactggcactgcctcaaggacacctacgagaccctcgccaccgacgtacagtggaaggtg
cgccgtacgctggcgttctccatccacgagctggcagtgatcctgggagaccagctgacg
gcggccgacctggtgcccatcttcaacggcttcctcaaggaccttgacgaggtgcgcatc
ggcgtgctcaaacacctctatgacttccttaagttgctccatgccgagaagaggagagag
tacctgtaccagctgcaggagttcatggtgaccgacaacagccgcaactggaggtttaga
tacgagctggccgagcagcttatcctgatcatagagttgtacagccactacgatgtgtat
gactacctcagacaaatagcactgaccctatgctcagacaaagtgtcggaagttcggtgg
atctcttacaagctggtggtggagatcttacagaagatgtatgcatgtggagcccatgac
ctgggcctgaacttcatcaacgagctcatcgtccgcttctgccactgtcccaagtgggtg
ggccgccaggccttcgcctttatctgccaggccatagtggaagaggactgtatgccaatg
gaccagtttgcccagcacctcctccccagtctactcagcctatcgtcggacccagtcgcc
aacgtccgtgtgctggtggccaaagcactgcggcagagtgtcatggagaaagcgtacttt
aaagagccaggcagtgcctactcagatgagctggaggagactgtgatggccctgcaggcg
gataaggaccgagacgtacgcttctttgccagccaggatcccaacatggcccttatggac
actgctgccttaatctag