Tag |
Content |
CGDB ID |
CGD-HoS-021038 |
Uniprot Accession |
O15534; O15534; PER1_HUMAN; B2RPA8; B4DI49; D3DTR3
|
Protein Name |
Period circadian protein homolog 1 |
Gene Name |
PER1; KIAA0482; PER; RIGUI |
Ensembl Information |
ENST000003172 |
Genbank Protein ID |
NP_002607.2; XP_005256746.1 |
Genbank Nucleotide ID |
NM_002616.2; XM_005256689.1 |
EMBL (Genbank) ID |
AAC51765.1 |
Organism |
Homo sapiens (Human) |
NCBI Taxa ID |
9606 |
Circadian Information
|
Evidence |
Phase |
Amplitude (FOLD) |
Sentence |
Tissue/Cell |
Data type |
PMID |
Peak |
Trough |
External condition |
High-throughput |
CT 1 |
CT 13 |
LL2 |
1.54 |
Insufficient sleep affects the human blood transcriptome, disrupts its circadian regulation, and intensifies the effects of acute total sleep deprivation. |
blood |
Microarray |
[1] |
Small-scale |
ZT 4 |
ZT 21 |
LD |
2.00 |
The expression of Per1 is cyclic in human HaCaT keratinocytes. |
human HaCaT keratinocytes |
Small-scale |
[1] |
Small-scale |
CT 0 |
CT 12 |
DD2 |
4.00 |
Among the rhythmic genes with circadian regulator binding sites were the circadian genes CRY1, CRY2, DEC1, DEC2, DBP, PER1, PER2, PER3, REVERBα, REVERBβ and TEF, which are regulated by BMAL1/CLOCK), and rhythmic genes without circadian regulator binding sites were BMAL1, E4BP4, and NPAS2 |
U2OS cells |
Small-scale |
[1] |
|
Description | Transcriptional repressor which forms a core component of the circadian clock. The circadian clock, an internal time-keeping system, regulates various physiological processes through the generation of approximately 24 hour circadian rhythms in gene expression, which are translated into rhythms in metabolism and behavior. It is derived from the Latin roots ''circa'' (about) and ''diem'' (day) and acts as an important regulator of a wide array of physiological functions including metabolism, sleep, body temperature, blood pressure, endocrine, immune, cardiovascular, and renal function. Consists of two major components: the central clock, residing in the suprachiasmatic nucleus (SCN) of the brain, and the peripheral clocks that are present in nearly every tissue and organ system. Both the central and peripheral clocks can be reset by environmental cues, also known as Zeitgebers (German for ''timegivers''). The predominant Zeitgeber for the central clock is light, which is sensed by retina(View all)Functional Description
Transcriptional repressor which forms a core component of the circadian clock. The circadian clock, an internal time-keeping system, regulates various physiological processes through the generation of approximately 24 hour circadian rhythms in gene expression, which are translated into rhythms in metabolism and behavior. It is derived from the Latin roots ''circa'' (about) and ''diem'' (day) and acts as an important regulator of a wide array of physiological functions including metabolism, sleep, body temperature, blood pressure, endocrine, immune, cardiovascular, and renal function. Consists of two major components: the central clock, residing in the suprachiasmatic nucleus (SCN) of the brain, and the peripheral clocks that are present in nearly every tissue and organ system. Both the central and peripheral clocks can be reset by environmental cues, also known as Zeitgebers (German for ''timegivers''). The predominant Zeitgeber for the central clock is light, which is sensed by retina and signals directly to the SCN. The central clock entrains the peripheral clocks through neuronal and hormonal signals, body temperature and feeding-related cues, aligning all clocks with the external light/dark cycle. Circadian rhythms allow an organism to achieve temporal homeostasis with its environment at the molecular level by regulating gene expression to create a peak of protein expression once every 24 hours to control when a particular physiological process is most active with respect to the solar day. Transcription and translation of core clock components (CLOCK, NPAS2, ARNTL/BMAL1, ARNTL2/BMAL2, PER1, PER2, PER3, CRY1 and CRY2) plays a critical role in rhythm generation, whereas delays imposed by post-translational modifications (PTMs) are important for determining the period (tau) of the rhythms (tau refers to the period of a rhythm and is the length, in time, of one complete cycle). A diurnal rhythm is synchronized with the day/night cycle, while the ultradian and infradian rhythms have a period shorter and longer than 24 hours, respectively. Disruptions in the circadian rhythms contribute to the pathology of cardiovascular diseases, cancer, metabolic syndromes and aging. A transcription/translation feedback loop (TTFL) forms the core of the molecular circadian clock mechanism. Transcription factors, CLOCK or NPAS2 and ARNTL/BMAL1 or ARNTL2/BMAL2, form the positive limb of the feedback loop, act in the form of a heterodimer and activate the transcription of core clock genes and clock-controlled genes (involved in key metabolic processes), harboring E-box elements (5''-CACGTG-3'') within their promoters. The core clock genes: PER1/2/3 and CRY1/2 which are transcriptional repressors form the negative limb of the feedback loop and interact with the CLOCK|NPAS2-ARNTL/BMAL1|ARNTL2/BMAL2 heterodimer inhibiting its activity and thereby negatively regulating their own expression. This heterodimer also activates nuclear receptors NR1D1/2 and RORA/B/G, which form a second feedback loop and which activate and repress ARNTL/BMAL1 transcription, respectively. Regulates circadian target genes expression at post-transcriptional levels, but may not be required for the repression at transcriptional level. Controls PER2 protein decay. Represses CRY2 preventing its repression on CLOCK/ARNTL target genes such as FXYD5 and SCNN1A in kidney and PPARA in liver. Besides its involvement in the maintenance of the circadian clock, has an important function in the regulation of several processes. Participates in the repression of glucocorticoid receptor NR3C1/GR-induced transcriptional activity by reducing the association of NR3C1/GR to glucocorticoid response elements (GREs) by ARNTL:CLOCK. Plays a role in the modulation of the neuroinflammatory state via the regulation of inflammatory mediators release, such as CCL2 and IL6. In spinal astrocytes, negatively regulates the MAPK14/p38 and MAPK8/JNK MAPK cascades as well as the subsequent activation of NFkappaB. Coordinately regulates the expression of multiple genes that are involved in the regulation of renal sodium reabsorption. Can act as gene expression activator in a gene and tissue specific manner, in kidney enhances WNK1 and SLC12A3 expression in collaboration with CLOCK. Modulates hair follicle cycling. Represses the CLOCK-ARNTL/BMAL1 induced transcription of BHLHE40/DEC1. |
PTM Sites Count: 46 (View all)
|
Position | Peptide | Type | PMID |
411 |
LMLAIHKKILQLAGQ |
ubiquitination |
23266961 |
136 |
SARARTQKELMTALR |
ubiquitination |
23266961 |
295 |
LRDFTQEKSVFCRIR |
ubiquitination |
23266961 |
324 |
RLTPYVTKIRVSDGA |
ubiquitination |
23266961 |
|
Protein Sequence (Fasta) |
MSGPLEGADG GGDPRPGESF CPGGVPSPGP PQHRPCPGPS LADDTDANSN GSSGNESNGH 60 ESRGASQRSS HSSSSGNGKD SALLETTESS KSTNSQSPSP PSSSIAYSLL SASSEQDNPS 120 TSGCSSEQSA RARTQKELMT ALRELKLRLP PERRGKGRSG TLATLQYALA CVKQVQANQE 180 YYQQWSLEEG EPCSMDMSTY TLEELEHITS EYTLQNQDTF SVAVSFLTGR IVYISEQAAV 240 LLRCKRDVFR GTRFSELLAP QDVGVFYGST APSRLPTWGT GASAGSGLRD FTQEKSVFCR 300 IRGGPDRDPG PRYQPFRLTP YVTKIRVSDG APAQPCCLLI AERIHSGYEA PRIPPDKRIF 360 TTRHTPSCLF QDVDERAAPL LGYLPQDLLG APVLLFLHPE DRPLMLAIHK KILQLAGQPF 420 DHSPIRFCAR NGEYVTMDTS WAGFVHPWSR KVAFVLGRHK VRTAPLNEDV FTPPAPSPAP 480 SLDTDIQELS EQIHRLLLQP VHSPSPTGLC GVGAVTSPGP LHSPGSSSDS NGGDAEGPGP 540 PAPVTFQQIC KDVHLVKHQG QQLFIESRAR PQSRPRLPAT GTFKAKALPC QSPDPELEAG 600 SAPVQAPLAL VPEEAERKEA SSCSYQQINC LDSILRYLES CNLPSTTKRK CASSSSYTTS 660 SASDDDRQRT GPVSVGTKKD PPSAALSGEG ATPRKEPVVG GTLSPLALAN KAESVVSVTS 720 QCSFSSTIVH VGDKKPPESD IIMMEDLPGL APGPAPSPAP SPTVAPDPAP DAYRPVGLTK 780 AVLSLHTQKE EQAFLSRFRD LGRLRGLDSS STAPSALGER GCHHGPAPPS RRHHCRSKAK 840 RSRHHQNPRA EAPCYVSHPS PVPPSTPWPT PPATTPFPAV VQPYPLPVFS PRGGPQPLPP 900 APTSVPPAAF PAPLVTPMVA LVLPNYLFPT PSSYPYGALQ TPAEGPPTPA SHSPSPSLPA 960 LAPSPPHRPD SPLFNSRCSS PLQLNLLQLE ELPRAEGAAV AGGPGSSAGP PPPSAEAAEP 1020 EARLAEVTES SNQDALSGSS DLLELLLQED SRSGTGSAAS GSLGSGLGSG SGSGSHEGGS 1080 TSASITRSSQ SSHTSKYFGS IDSSEAEAGA ARGGAEPGDQ VIKYVLQDPI WLLMANADQR 1140 VMMTYQVPSR DMTSVLKQDR ERLRAMQKQQ PRFSEDQRRE LGAVHSWVRK GQLPRALDVM 1200 ACVDCGSSTQ DPGHPDDPLF SELDGLGLEP MEEGGGEQGS SGGGSGEGEG CEEAQGGAKA 1260 SSSQDLAMEE EEEGRSSSSP ALPTAGNCTS Fasta Sequence
>CGD-HoS-021038|O15534|Period circadian protein homolog 1|Homo sapiens (Human) MSGPLEGADGGGDPRPGESFCPGGVPSPGPPQHRPCPGPSLADDTDANSNGSSGNESNGHESRGASQRSSHSSSSGNGKDSALLETTESSKSTNSQSPSPPSSSIAYSLLSASSEQDNPSTSGCSSEQSARARTQKELMTALRELKLRLPPERRGKGRSGTLATLQYALACVKQVQANQEYYQQWSLEEGEPCSMDMSTYTLEELEHITSEYTLQNQDTFSVAVSFLTGRIVYISEQAAVLLRCKRDVFRGTRFSELLAPQDVGVFYGSTAPSRLPTWGTGASAGSGLRDFTQEKSVFCRIRGGPDRDPGPRYQPFRLTPYVTKIRVSDGAPAQPCCLLIAERIHSGYEAPRIPPDKRIFTTRHTPSCLFQDVDERAAPLLGYLPQDLLGAPVLLFLHPEDRPLMLAIHKKILQLAGQPFDHSPIRFCARNGEYVTMDTSWAGFVHPWSRKVAFVLGRHKVRTAPLNEDVFTPPAPSPAPSLDTDIQELSEQIHRLLLQPVHSPSPTGLCGVGAVTSPGPLHSPGSSSDSNGGDAEGPGPPAPVTFQQICKDVHLVKHQGQQLFIESRARPQSRPRLPATGTFKAKALPCQSPDPELEAGSAPVQAPLALVPEEAERKEASSCSYQQINCLDSILRYLESCNLPSTTKRKCASSSSYTTSSASDDDRQRTGPVSVGTKKDPPSAALSGEGATPRKEPVVGGTLSPLALANKAESVVSVTSQCSFSSTIVHVGDKKPPESDIIMMEDLPGLAPGPAPSPAPSPTVAPDPAPDAYRPVGLTKAVLSLHTQKEEQAFLSRFRDLGRLRGLDSSSTAPSALGERGCHHGPAPPSRRHHCRSKAKRSRHHQNPRAEAPCYVSHPSPVPPSTPWPTPPATTPFPAVVQPYPLPVFSPRGGPQPLPPAPTSVPPAAFPAPLVTPMVALVLPNYLFPTPSSYPYGALQTPAEGPPTPASHSPSPSLPALAPSPPHRPDSPLFNSRCSSPLQLNLLQLEELPRAEGAAVAGGPGSSAGPPPPSAEAAEPEARLAEVTESSNQDALSGSSDLLELLLQEDSRSGTGSAASGSLGSGLGSGSGSGSHEGGSTSASITRSSQSSHTSKYFGSIDSSEAEAGAARGGAEPGDQVIKYVLQDPIWLLMANADQRVMMTYQVPSRDMTSVLKQDRERLRAMQKQQPRFSEDQRRELGAVHSWVRKGQLPRALDVMACVDCGSSTQDPGHPDDPLFSELDGLGLEPMEEGGGEQGSSGGGSGEGEGCEEAQGGAKASSSQDLAMEEEEEGRSSSSPALPTAGNCTS
|
Nucleotide Sequence (Fasta) |
ATGAGTGGCC CCCTAGAAGG GGCTGATGGG GGAGGGGACC CCAGGCCTGG GGAATCATTT 60 TGTCCTGGGG GCGTCCCATC CCCTGGGCCC CCACAGCACC GGCCTTGCCC AGGCCCCAGC 120 CTGGCCGATG ACACCGATGC CAACAGCAAT GGTTCAAGTG GCAATGAGTC CAACGGGCAT 180 GAGTCTAGAG GCGCATCTCA GCGGAGCTCA CACAGCTCCT CCTCAGGCAA CGGCAAGGAC 240 TCAGCCCTGC TGGAGACCAC TGAGAGCAGC AAGAGCACAA ACTCTCAGAG CCCATCCCCA 300 CCCAGCAGTT CCATTGCCTA CAGCCTCCTG AGTGCCAGCT CAGAGCAGGA CAACCCGTCC 360 ACCAGTGGCT GCAGCAGTGA ACAGTCAGCC CGGGCAAGGA CTCAGAAGGA ACTCATGACA 420 GCACTTCGAG AGCTCAAGCT TCGACTGCCG CCAGAGCGCC GGGGCAAGGG CCGCTCTGGG 480 ACCCTGGCCA CGCTGCAGTA CGCACTGGCC TGTGTCAAGC AGGTGCAGGC CAACCAGGAA 540 TACTACCAGC AGTGGAGCCT GGAGGAGGGC GAGCCTTGCT CCATGGACAT GTCCACCTAT 600 ACCCTGGAGG AGCTGGAGCA CATCACGTCT GAGTACACAC TTCAGAACCA GGATACCTTC 660 TCAGTGGCTG TCTCCTTCCT GACGGGCCGA ATCGTCTACA TTTCGGAGCA GGCAGCCGTC 720 CTGCTGCGTT GCAAGCGGGA CGTGTTCCGG GGTACCCGCT TCTCTGAGCT CCTGGCTCCC 780 CAGGATGTGG GAGTCTTCTA TGGTTCCACT GCTCCATCTC GCCTGCCCAC CTGGGGCACA 840 GGGGCCTCAG CAGGTTCAGG CCTCAGGGAC TTTACCCAGG AGAAGTCCGT CTTCTGCCGT 900 ATCAGAGGAG GTCCTGACCG GGATCCAGGG CCTCGGTACC AGCCATTCCG CCTAACCCCG 960 TATGTGACCA AGATCCGGGT CTCAGATGGG GCCCCTGCAC AGCCGTGCTG CCTGCTGATT 1020 GCAGAGCGCA TCCATTCGGG TTACGAAGCT CCCCGGATAC CCCCTGACAA GAGGATTTTC 1080 ACTACGCGGC ACACACCCAG CTGCCTCTTC CAGGATGTGG ATGAAAGGGC TGCCCCCCTG 1140 CTGGGCTACC TGCCCCAGGA CCTCCTGGGG GCCCCAGTGC TCCTGTTCCT GCATCCTGAG 1200 GACCGACCCC TCATGCTGGC TATCCACAAG AAGATTCTGC AGTTGGCGGG CCAGCCCTTT 1260 GACCACTCCC CTATCCGCTT CTGTGCCCGC AACGGGGAGT ATGTCACCAT GGACACCAGC 1320 TGGGCTGGCT TTGTGCACCC CTGGAGCCGC AAGGTAGCCT TCGTGTTGGG CCGCCACAAA 1380 GTACGCACGG CCCCCCTGAA TGAGGACGTG TTCACTCCCC CGGCCCCCAG CCCAGCTCCC 1440 TCCCTGGACA CTGATATCCA GGAGCTGTCA GAGCAGATCC ACCGGCTGCT GCTGCAGCCC 1500 GTCCACAGCC CCAGCCCCAC GGGACTCTGT GGAGTCGGCG CCGTGACATC CCCAGGCCCT 1560 CTCCACAGCC CTGGGTCCTC CAGTGATAGC AACGGGGGTG ATGCAGAGGG GCCTGGGCCT 1620 CCTGCGCCAG TGACTTTCCA ACAGATCTGT AAGGATGTGC ATCTGGTGAA GCACCAGGGC 1680 CAGCAGCTTT TTATTGAGTC TCGGGCCCGG CCTCAGTCCC GGCCCCGCCT CCCTGCTACA 1740 GGCACGTTCA AGGCCAAGGC CCTTCCCTGC CAATCCCCAG ACCCAGAGCT GGAGGCGGGT 1800 TCTGCTCCCG TCCAGGCCCC ACTAGCCTTG GTCCCTGAGG AGGCCGAGAG GAAAGAAGCC 1860 TCCAGCTGCT CCTACCAGCA GATCAACTGC CTGGACAGCA TCCTCAGGTA CCTGGAGAGC 1920 TGCAACCTCC CCAGCACCAC TAAGCGTAAA TGTGCCTCCT CCTCCTCCTA TACCACCTCC 1980 TCAGCCTCTG ACGACGACAG GCAGAGGACA GGTCCAGTCT CTGTGGGGAC CAAGAAAGAT 2040 CCGCCGTCAG CAGCGCTGTC TGGGGAGGGG GCCACCCCAC GGAAGGAGCC AGTGGTGGGA 2100 GGCACCCTGA GCCCGCTCGC CCTGGCCAAT AAGGCGGAGA GTGTGGTGTC CGTCACCAGT 2160 CAGTGTAGCT TCAGCTCCAC CATCGTCCAT GTGGGAGACA AGAAGCCCCC GGAGTCGGAC 2220 ATCATCATGA TGGAGGACCT GCCTGGTCTA GCCCCAGGCC CAGCCCCCAG CCCAGCCCCC 2280 AGCCCCACAG TAGCCCCTGA CCCAGCCCCA GACGCCTACC GTCCAGTGGG GCTGACCAAG 2340 GCCGTGCTGT CCCTGCACAC GCAGAAGGAA GAGCAAGCCT TCCTCAGCCG CTTCCGAGAC 2400 CTGGGCAGGC TGCGTGGACT CGACAGCTCT TCCACAGCTC CCTCAGCCCT TGGCGAGCGA 2460 GGCTGCCACC ACGGCCCCGC ACCCCCAAGC CGCCGACACC ACTGCCGATC CAAAGCCAAG 2520 CGCTCACGCC ACCACCAGAA CCCTCGGGCT GAAGCGCCCT GCTATGTCTC ACACCCCTCA 2580 CCCGTGCCAC CCTCCACCCC CTGGCCCACC CCACCAGCCA CTACCCCCTT CCCAGCGGTT 2640 GTCCAGCCCT ACCCTCTCCC AGTGTTCTCT CCTCGAGGAG GCCCCCAGCC TCTTCCCCCT 2700 GCTCCCACAT CTGTGCCCCC AGCTGCTTTC CCCGCCCCTT TGGTGACCCC AATGGTGGCC 2760 TTGGTGCTCC CTAACTATCT GTTCCCAACC CCATCCAGCT ATCCTTATGG GGCACTCCAG 2820 ACCCCTGCTG AAGGGCCTCC CACTCCTGCC TCGCACTCCC CTTCTCCATC CTTGCCCGCC 2880 CTCCCCCCGA GTCCTCCTCA CCGCCCGGAC TCTCCACTGT TCAACTCGAG ATGCAGCTCT 2940 CCACTCCAGC TCAATCTGCT GCAGCTGGAG GAGCTCCCCC GTGCTGAGGG GGCTGCTGTT 3000 GCAGGAGGCC CTGGGAGCAG TGCCGGGCCC CCACCTCCCA GTGCGGAGGC TGCTGAGCCA 3060 GAGGCCAGAC TGGCGGAGGT CACTGAGTCC TCCAATCAGG ACGCACTTTC CGGCTCCAGT 3120 GACCTGCTCG AACTTCTGCT GCAAGAGGAC TCGCGCTCCG GCACAGGCTC CGCAGCCTCG 3180 GGCTCCTTGG GCTCTGGCTT GGGCTCTGGG TCTGGTTCAG GCTCCCATGA AGGGGGCAGC 3240 ACCTCAGCCA GCATCACTCG CAGCAGCCAG AGCAGCCACA CAAGCAAATA CTTTGGCAGC 3300 ATCGACTCTT CCGAGGCTGA GGCTGGGGCT GCTCGGGGCG GGGCTGAGCC TGGGGACCAG 3360 GTGATTAAGT ACGTGCTCCA GGATCCCATT TGGCTGCTCA TGGCCAATGC TGACCAGCGC 3420 GTCATGATGA CCTACCAGGT GCCCTCCAGG GACATGACCT CTGTGCTGAA GCAGGATCGG 3480 GAGCGGCTCC GAGCCATGCA GAAGCAGCAG CCTCGGTTTT CTGAGGACCA GCGGCGGGAA 3540 CTGGGTGCTG TGCACTCCTG GGTCCGGAAG GGCCAACTGC CTCGGGCTCT TGATGTGATG 3600 GCCTGTGTGG ACTGTGGGAG CAGCACCCAA GATCCTGGTC ACCCTGATGA CCCACTCTTC 3660 TCAGAGCTGG ATGGACTGGG GCTGGAGCCC ATGGAAGAGG GTGGAGGCGA GCAGGGCAGC 3720 AGCGGTGGCG GCAGTGGTGA GGGAGAGGGC TGCGAGGAGG CCCAAGGCGG GGCCAAGGCT 3780 TCAAGCTCTC AGGACTTGGC TATGGAGGAG GAGGAAGAAG GCAGGAGCTC ATCCAGTCCA 3840 GCCTTACCTA CAGCAGGAAA CTGCACCAGC TAG 3873Fasta Sequence
>CGD-HoS-021038|AAC51765.1|PER1|Homo sapiens (Human) ATGAGTGGCCCCCTAGAAGGGGCTGATGGGGGAGGGGACCCCAGGCCTGGGGAATCATTTTGTCCTGGGGGCGTCCCATCCCCTGGGCCCCCACAGCACCGGCCTTGCCCAGGCCCCAGCCTGGCCGATGACACCGATGCCAACAGCAATGGTTCAAGTGGCAATGAGTCCAACGGGCATGAGTCTAGAGGCGCATCTCAGCGGAGCTCACACAGCTCCTCCTCAGGCAACGGCAAGGACTCAGCCCTGCTGGAGACCACTGAGAGCAGCAAGAGCACAAACTCTCAGAGCCCATCCCCACCCAGCAGTTCCATTGCCTACAGCCTCCTGAGTGCCAGCTCAGAGCAGGACAACCCGTCCACCAGTGGCTGCAGCAGTGAACAGTCAGCCCGGGCAAGGACTCAGAAGGAACTCATGACAGCACTTCGAGAGCTCAAGCTTCGACTGCCGCCAGAGCGCCGGGGCAAGGGCCGCTCTGGGACCCTGGCCACGCTGCAGTACGCACTGGCCTGTGTCAAGCAGGTGCAGGCCAACCAGGAATACTACCAGCAGTGGAGCCTGGAGGAGGGCGAGCCTTGCTCCATGGACATGTCCACCTATACCCTGGAGGAGCTGGAGCACATCACGTCTGAGTACACACTTCAGAACCAGGATACCTTCTCAGTGGCTGTCTCCTTCCTGACGGGCCGAATCGTCTACATTTCGGAGCAGGCAGCCGTCCTGCTGCGTTGCAAGCGGGACGTGTTCCGGGGTACCCGCTTCTCTGAGCTCCTGGCTCCCCAGGATGTGGGAGTCTTCTATGGTTCCACTGCTCCATCTCGCCTGCCCACCTGGGGCACAGGGGCCTCAGCAGGTTCAGGCCTCAGGGACTTTACCCAGGAGAAGTCCGTCTTCTGCCGTATCAGAGGAGGTCCTGACCGGGATCCAGGGCCTCGGTACCAGCCATTCCGCCTAACCCCGTATGTGACCAAGATCCGGGTCTCAGATGGGGCCCCTGCACAGCCGTGCTGCCTGCTGATTGCAGAGCGCATCCATTCGGGTTACGAAGCTCCCCGGATACCCCCTGACAAGAGGATTTTCACTACGCGGCACACACCCAGCTGCCTCTTCCAGGATGTGGATGAAAGGGCTGCCCCCCTGCTGGGCTACCTGCCCCAGGACCTCCTGGGGGCCCCAGTGCTCCTGTTCCTGCATCCTGAGGACCGACCCCTCATGCTGGCTATCCACAAGAAGATTCTGCAGTTGGCGGGCCAGCCCTTTGACCACTCCCCTATCCGCTTCTGTGCCCGCAACGGGGAGTATGTCACCATGGACACCAGCTGGGCTGGCTTTGTGCACCCCTGGAGCCGCAAGGTAGCCTTCGTGTTGGGCCGCCACAAAGTACGCACGGCCCCCCTGAATGAGGACGTGTTCACTCCCCCGGCCCCCAGCCCAGCTCCCTCCCTGGACACTGATATCCAGGAGCTGTCAGAGCAGATCCACCGGCTGCTGCTGCAGCCCGTCCACAGCCCCAGCCCCACGGGACTCTGTGGAGTCGGCGCCGTGACATCCCCAGGCCCTCTCCACAGCCCTGGGTCCTCCAGTGATAGCAACGGGGGTGATGCAGAGGGGCCTGGGCCTCCTGCGCCAGTGACTTTCCAACAGATCTGTAAGGATGTGCATCTGGTGAAGCACCAGGGCCAGCAGCTTTTTATTGAGTCTCGGGCCCGGCCTCAGTCCCGGCCCCGCCTCCCTGCTACAGGCACGTTCAAGGCCAAGGCCCTTCCCTGCCAATCCCCAGACCCAGAGCTGGAGGCGGGTTCTGCTCCCGTCCAGGCCCCACTAGCCTTGGTCCCTGAGGAGGCCGAGAGGAAAGAAGCCTCCAGCTGCTCCTACCAGCAGATCAACTGCCTGGACAGCATCCTCAGGTACCTGGAGAGCTGCAACCTCCCCAGCACCACTAAGCGTAAATGTGCCTCCTCCTCCTCCTATACCACCTCCTCAGCCTCTGACGACGACAGGCAGAGGACAGGTCCAGTCTCTGTGGGGACCAAGAAAGATCCGCCGTCAGCAGCGCTGTCTGGGGAGGGGGCCACCCCACGGAAGGAGCCAGTGGTGGGAGGCACCCTGAGCCCGCTCGCCCTGGCCAATAAGGCGGAGAGTGTGGTGTCCGTCACCAGTCAGTGTAGCTTCAGCTCCACCATCGTCCATGTGGGAGACAAGAAGCCCCCGGAGTCGGACATCATCATGATGGAGGACCTGCCTGGTCTAGCCCCAGGCCCAGCCCCCAGCCCAGCCCCCAGCCCCACAGTAGCCCCTGACCCAGCCCCAGACGCCTACCGTCCAGTGGGGCTGACCAAGGCCGTGCTGTCCCTGCACACGCAGAAGGAAGAGCAAGCCTTCCTCAGCCGCTTCCGAGACCTGGGCAGGCTGCGTGGACTCGACAGCTCTTCCACAGCTCCCTCAGCCCTTGGCGAGCGAGGCTGCCACCACGGCCCCGCACCCCCAAGCCGCCGACACCACTGCCGATCCAAAGCCAAGCGCTCACGCCACCACCAGAACCCTCGGGCTGAAGCGCCCTGCTATGTCTCACACCCCTCACCCGTGCCACCCTCCACCCCCTGGCCCACCCCACCAGCCACTACCCCCTTCCCAGCGGTTGTCCAGCCCTACCCTCTCCCAGTGTTCTCTCCTCGAGGAGGCCCCCAGCCTCTTCCCCCTGCTCCCACATCTGTGCCCCCAGCTGCTTTCCCCGCCCCTTTGGTGACCCCAATGGTGGCCTTGGTGCTCCCTAACTATCTGTTCCCAACCCCATCCAGCTATCCTTATGGGGCACTCCAGACCCCTGCTGAAGGGCCTCCCACTCCTGCCTCGCACTCCCCTTCTCCATCCTTGCCCGCCCTCCCCCCGAGTCCTCCTCACCGCCCGGACTCTCCACTGTTCAACTCGAGATGCAGCTCTCCACTCCAGCTCAATCTGCTGCAGCTGGAGGAGCTCCCCCGTGCTGAGGGGGCTGCTGTTGCAGGAGGCCCTGGGAGCAGTGCCGGGCCCCCACCTCCCAGTGCGGAGGCTGCTGAGCCAGAGGCCAGACTGGCGGAGGTCACTGAGTCCTCCAATCAGGACGCACTTTCCGGCTCCAGTGACCTGCTCGAACTTCTGCTGCAAGAGGACTCGCGCTCCGGCACAGGCTCCGCAGCCTCGGGCTCCTTGGGCTCTGGCTTGGGCTCTGGGTCTGGTTCAGGCTCCCATGAAGGGGGCAGCACCTCAGCCAGCATCACTCGCAGCAGCCAGAGCAGCCACACAAGCAAATACTTTGGCAGCATCGACTCTTCCGAGGCTGAGGCTGGGGCTGCTCGGGGCGGGGCTGAGCCTGGGGACCAGGTGATTAAGTACGTGCTCCAGGATCCCATTTGGCTGCTCATGGCCAATGCTGACCAGCGCGTCATGATGACCTACCAGGTGCCCTCCAGGGACATGACCTCTGTGCTGAAGCAGGATCGGGAGCGGCTCCGAGCCATGCAGAAGCAGCAGCCTCGGTTTTCTGAGGACCAGCGGCGGGAACTGGGTGCTGTGCACTCCTGGGTCCGGAAGGGCCAACTGCCTCGGGCTCTTGATGTGATGGCCTGTGTGGACTGTGGGAGCAGCACCCAAGATCCTGGTCACCCTGATGACCCACTCTTCTCAGAGCTGGATGGACTGGGGCTGGAGCCCATGGAAGAGGGTGGAGGCGAGCAGGGCAGCAGCGGTGGCGGCAGTGGTGAGGGAGAGGGCTGCGAGGAGGCCCAAGGCGGGGCCAAGGCTTCAAGCTCTCAGGACTTGGCTATGGAGGAGGAGGAAGAAGGCAGGAGCTCATCCAGTCCAGCCTTACCTACAGCAGGAAACTGCACCAGCTAG
|
Sequence Source |
Uniprot/ENA |
Orthology |
|
Keyword |
KW-0002--3D-structure KW-0025--Alternative splicing KW-0090--Biological rhythms KW-0181--Complete proteome KW-0963--Cytoplasm KW-0539--Nucleus KW-0597--Phosphoprotein KW-0621--Polymorphism KW-1185--Reference proteome KW-0677--Repeat KW-0804--Transcription KW-0805--Transcription regulation KW-0832--Ubl conjugation
|
Gene Ontology |
GO:0005737--C:cytoplasm GO:0005634--C:nucleus GO:0031490--F:chromatin DNA binding GO:0070888--F:E-box binding GO:0019900--F:kinase binding GO:0000978--F:RNA polymerase II core promoter proximal region sequence-specific DNA binding GO:0000989--F:transcription factor activity, transcription factor binding GO:0031625--F:ubiquitin protein ligase binding GO:0032922--P:circadian regulation of gene expression GO:0097167--P:circadian regulation of translation GO:0007623--P:circadian rhythm GO:0009649--P:entrainment of circadian clock GO:0043153--P:entrainment of circadian clock by photoperiod GO:0043966--P:histone H3 acetylation GO:0070932--P:histone H3 deacetylation GO:0043967--P:histone H4 acetylation GO:2000323--P:negative regulation of glucocorticoid receptor signaling pathway GO:0043124--P:negative regulation of I-kappaB kinase/NF-kappaB signaling GO:0046329--P:negative regulation of JNK cascade GO:0000122--P:negative regulation of transcription from RNA polymerase II promoter GO:0045892--P:negative regulation of transcription, DNA-templated GO:0045944--P:positive regulation of transcription from RNA polymerase II promoter GO:0010608--P:posttranscriptional regulation of gene expression GO:0042752--P:regulation of circadian rhythm GO:1900015--P:regulation of cytokine production involved in inflammatory response GO:0042634--P:regulation of hair cycle GO:1900744--P:regulation of p38MAPK cascade GO:0002028--P:regulation of sodium ion transport GO:0051591--P:response to cAMP GO:0006351--P:transcription, DNA-templated
|
Interpro |
IPR000014--PAS IPR013655--PAS_fold_3 IPR022728--Period_circadian-like_C
|
PROSITE |
PS50112--PAS
|
Pfam |
PF08447--PAS_3 PF12114--Period_C
|
SMART |
SM00091--PAS
|