Tag |
Content |
WERAM ID |
WERAM-Hos-0081 |
Ensembl Protein ID |
ENSP00000349508.2 |
Uniprot Accession |
Q14839; CHD4_HUMAN; Q8IXZ5 |
Genbank Protein ID |
NP_001264.2; NP_001284482.1; XP_006719021.1 |
Protein Name |
Chromodomain-helicase-DNA-binding protein 4 |
Genbank Nucleotide ID |
NM_001273.3; NM_001297553.1; XM_006718958.1 |
Gene Name |
CHD4 |
Ensembl Information |
|
Details |
Type |
Family |
Domain |
Substrates |
AA |
References (PMIDs) |
Me_Reader |
DCD |
Chromo1 |
H3K9me3 |
K |
24576085 |
Me_Reader |
PHD |
PHD1 |
H3K9me3 |
K |
24576085 |
|
Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
Me_Reader |
PHD |
5.00e-19 |
70.5 |
371 |
494 |
Me_Reader |
DCD |
2.60e-40 |
123.4 |
542 |
578 |
|
Organism |
Homo sapiens |
NCBI Taxa ID |
9606 |
Functional Description (View)Functional Description
Component of the histone deacetylase NuRD complex which participates in the remodeling of chromatin by deacetylating histones. |
Component of the histone deacetylase NuRD complex which participates in the remodeling of chromatin by deacetylating histones.
|
Domain Profile |
Me_Reader PHD
PHD.txt 2 tiClvCgkddegekemvqCdeCddwfHlkCvklplsslpegkswyCpsCke 52 ++C vC +++ + ++ Cd+C++++H+ C+++ ++++peg +w Cp+C++ ENSP00000349508.2 371 DYCEVC-QQGGE---IILCDTCPRAYHMVCLDPDMEKAPEG-KWSCPHCEK 416 69****.55444...9*************************.*******87 PP PHD.txt 2 tiClvCgkddegekemvqCdeCddwfHlkCvklplsslpegkswyCpsCk 51 ++C+vC kd+ + +++Cd+C+ +H++C+++pl ++p+g +w+Cp+C+ ENSP00000349508.2 450 EFCRVC-KDGGE---LLCCDTCPSSYHIHCLNPPLPEIPNG-EWLCPRCT 494 69****.66665...9*************************.*******7 PP
Me_Reader DCD
Chromo-2.txt 18 hyLikWkdlpYdeaswesatvenkkypqlvqsfyeer 54 ++++kW+++ Y +sw+s+ ++ + +++ ++ ENSP00000349508.2 542 QFFVKWQGMSYWHCSWVSELQLELHCQVMFRNYQRKN 578 79****************9999999999988888665 PP Chromo-2.txt 1 mmverIinhsvdkkGelhyLikWkdlpYdeaswesatvenkkypqlvqsfyeeresmrgee 61 mm++rI+nhsvdkkG++hyLikW+dlpYd+aswes++ve+++y++++qs++++re+mrgee ENSP00000349508.2 622 MMIHRILNHSVDKKGHVHYLIKWRDLPYDQASWESEDVEIQDYDLFKQSYWNHRELMRGEE 682 8**********************************************************98 PP
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Protein Sequence (Fasta) | MASGLGSPSP CSAGSEEEDM DALLNNSLPP PHPENEEDPE EDLSETETPK LKKKKKPKKP 60 RDPKIPKSKR QKKERMLLCR QLGDSSGEGP EFVEEEEEVA LRSDSEGSDY TPGKKKKKKL 120 GPKKEKKSKS KRKEEEEEED DDDDSKEPKS SAQLLEDWGM EDIDHVFSEE DYRTLTNYKA 180 FSQFVRPLIA AKNPKIAVSK MMMVLGAKWR EFSTNNPFKG SSGASVAAAA AAAVAVVESM 240 VTATEVAPPP PPVEVPIRKA KTKEGKGPNA RRKPKGSPRV PDAKKPKPKK VAPLKIKLGG 300 FGSKRKRSSS EDDDLDVESD FDDASINSYS VSDGSTSRSS RSRKKLRTTK KKKKGEEEVT 360 AVDGYETDHQ DYCEVCQQGG EIILCDTCPR AYHMVCLDPD MEKAPEGKWS CPHCEKEGIQ 420 WEAKEDNSEG EEILEEVGGD LEEEDDHHME FCRVCKDGGE LLCCDTCPSS YHIHCLNPPL 480 PEIPNGEWLC PRCTCPALKG KVQKILIWKW GQPPSPTPVP RPPDADPNTP SPKPLEGRPE 540 RQFFVKWQGM SYWHCSWVSE LQLELHCQVM FRNYQRKNDM DEPPSGDFGG DEEKSRKRKN 600 KDPKFAEMEE RFYRYGIKPE WMMIHRILNH SVDKKGHVHY LIKWRDLPYD QASWESEDVE 660 IQDYDLFKQS YWNHRELMRG EEGRPGKKLK KVKLRKLERP PETPTVDPTV KYERQPEYLD 720 ATGGTLHPYQ MEGLNWLRFS WAQGTDTILA DEMGLGKTVQ TAVFLYSLYK EGHSKGPFLV 780 SAPLSTIINW EREFEMWAPD MYVVTYVGDK DSRAIIRENE FSFEDNAIRG GKKASRMKKE 840 ASVKFHVLLT SYELITIDMA ILGSIDWACL IVDEAHRLKN NQSKFFRVLN GYSLQHKLLL 900 TGTPLQNNLE ELFHLLNFLT PERFHNLEGF LEEFADIAKE DQIKKLHDML GPHMLRRLKA 960 DVFKNMPSKT ELIVRVELSP MQKKYYKYIL TRNFEALNAR GGGNQVSLLN VVMDLKKCCN 1020 HPYLFPVAAM EAPKMPNGMY DGSALIRASG KLLLLQKMLK NLKEGGHRVL IFSQMTKMLD 1080 LLEDFLEHEG YKYERIDGGI TGNMRQEAID RFNAPGAQQF CFLLSTRAGG LGINLATADT 1140 VIIYDSDWNP HNDIQAFSRA HRIGQNKKVM IYRFVTRASV EERITQVAKK KMMLTHLVVR 1200 PGLGSKTGSM SKQELDDILK FGTEELFKDE ATDGGGDNKE GEDSSVIHYD DKAIERLLDR 1260 NQDETEDTEL QGMNEYLSSF KVAQYVVREE EMGEEEEVER EIIKQEESVD PDYWEKLLRH 1320 HYEQQQEDLA RNLGKGKRIR KQVNYNDGSQ EDRDWQDDQS DNQSDYSVAS EEGDEDFDER 1380 SEAPRRPSRK GLRNDKDKPL PPLLARVGGN IEVLGFNARQ RKAFLNAIMR YGMPPQDAFT 1440 TQWLVRDLRG KSEKEFKAYV SLFMRHLCEP GADGAETFAD GVPREGLSRQ HVLTRIGVMS 1500 LIRKKVQEFE HVNGRWSMPE LAEVEENKKM SQPGSPSPKT PTPSTPGDTQ PNTPAPVPPA 1560 EDGIKIEENS LKEEESIEGE KEVKSTAPET AIECTQAPAP ASEDEKVVVE PPEGEEKVEK 1620 AEVKERTEEP METEPKGAAD VEKVEEKSAI DLTPIVVEDK EEKKEEEEKK EVMLQNGETP 1680 KDLNDEKQKK NIKQRFMFNI ADGGFTELHS LWQNEERAAT VTKKTYEIWH RRHDYWLLAG 1740 IINHGYARWQ DIQNDPRYAI LNEPFKGEMN RGNFLEIKNK FLARRFKLLE QALVIEEQLR 1800 RAAYLNMSED PSHPSMALNT RFAEVECLAE SHQHLSKESM AGNKPANAVL HKVLKQLEEL 1860 LSDMKADVTR LPATIARIPP VAVRLQMSER NILSRLANRA PEPTPQQVAQ QQ 1912Protein Fasta Sequence
>ENSP00000349508.2|CHD4|Homo sapiens MASGLGSPSPCSAGSEEEDMDALLNNSLPPPHPENEEDPEEDLSETETPKLKKKKKPKKPRDPKIPKSKRQKKERMLLCRQLGDSSGEGPEFVEEEEEVALRSDSEGSDYTPGKKKKKKLGPKKEKKSKSKRKEEEEEEDDDDDSKEPKSSAQLLEDWGMEDIDHVFSEEDYRTLTNYKAFSQFVRPLIAAKNPKIAVSKMMMVLGAKWREFSTNNPFKGSSGASVAAAAAAAVAVVESMVTATEVAPPPPPVEVPIRKAKTKEGKGPNARRKPKGSPRVPDAKKPKPKKVAPLKIKLGGFGSKRKRSSSEDDDLDVESDFDDASINSYSVSDGSTSRSSRSRKKLRTTKKKKKGEEEVTAVDGYETDHQDYCEVCQQGGEIILCDTCPRAYHMVCLDPDMEKAPEGKWSCPHCEKEGIQWEAKEDNSEGEEILEEVGGDLEEEDDHHMEFCRVCKDGGELLCCDTCPSSYHIHCLNPPLPEIPNGEWLCPRCTCPALKGKVQKILIWKWGQPPSPTPVPRPPDADPNTPSPKPLEGRPERQFFVKWQGMSYWHCSWVSELQLELHCQVMFRNYQRKNDMDEPPSGDFGGDEEKSRKRKNKDPKFAEMEERFYRYGIKPEWMMIHRILNHSVDKKGHVHYLIKWRDLPYDQASWESEDVEIQDYDLFKQSYWNHRELMRGEEGRPGKKLKKVKLRKLERPPETPTVDPTVKYERQPEYLDATGGTLHPYQMEGLNWLRFSWAQGTDTILADEMGLGKTVQTAVFLYSLYKEGHSKGPFLVSAPLSTIINWEREFEMWAPDMYVVTYVGDKDSRAIIRENEFSFEDNAIRGGKKASRMKKEASVKFHVLLTSYELITIDMAILGSIDWACLIVDEAHRLKNNQSKFFRVLNGYSLQHKLLLTGTPLQNNLEELFHLLNFLTPERFHNLEGFLEEFADIAKEDQIKKLHDMLGPHMLRRLKADVFKNMPSKTELIVRVELSPMQKKYYKYILTRNFEALNARGGGNQVSLLNVVMDLKKCCNHPYLFPVAAMEAPKMPNGMYDGSALIRASGKLLLLQKMLKNLKEGGHRVLIFSQMTKMLDLLEDFLEHEGYKYERIDGGITGNMRQEAIDRFNAPGAQQFCFLLSTRAGGLGINLATADTVIIYDSDWNPHNDIQAFSRAHRIGQNKKVMIYRFVTRASVEERITQVAKKKMMLTHLVVRPGLGSKTGSMSKQELDDILKFGTEELFKDEATDGGGDNKEGEDSSVIHYDDKAIERLLDRNQDETEDTELQGMNEYLSSFKVAQYVVREEEMGEEEEVEREIIKQEESVDPDYWEKLLRHHYEQQQEDLARNLGKGKRIRKQVNYNDGSQEDRDWQDDQSDNQSDYSVASEEGDEDFDERSEAPRRPSRKGLRNDKDKPLPPLLARVGGNIEVLGFNARQRKAFLNAIMRYGMPPQDAFTTQWLVRDLRGKSEKEFKAYVSLFMRHLCEPGADGAETFADGVPREGLSRQHVLTRIGVMSLIRKKVQEFEHVNGRWSMPELAEVEENKKMSQPGSPSPKTPTPSTPGDTQPNTPAPVPPAEDGIKIEENSLKEEESIEGEKEVKSTAPETAIECTQAPAPASEDEKVVVEPPEGEEKVEKAEVKERTEEPMETEPKGAADVEKVEEKSAIDLTPIVVEDKEEKKEEEEKKEVMLQNGETPKDLNDEKQKKNIKQRFMFNIADGGFTELHSLWQNEERAATVTKKTYEIWHRRHDYWLLAGIINHGYARWQDIQNDPRYAILNEPFKGEMNRGNFLEIKNKFLARRFKLLEQALVIEEQLRRAAYLNMSEDPSHPSMALNTRFAEVECLAESHQHLSKESMAGNKPANAVLHKVLKQLEELLSDMKADVTRLPATIARIPPVAVRLQMSERNILSRLANRAPEPTPQQVAQQQ
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Nucleotide Sequence (Fasta) | ATTTTCCCCC CTTCGGCCGC GGCGAGGAGG AGCCGGAGCG GGAGTGACAC CGAGCCGGAC 60 CCAGCGCGAC CTGCGGCGGC TCCGGGTGAC TCGGGCCAGT GTAGAGGTCC TCAGGCCGCC 120 GGCAGGAGCA GCTGGGCCAA TTCCCTGGCC GGGAGCGGAA GGGGATGGCG TCGGGCCTGG 180 GCTCCCCGTC CCCCTGCTCG GCGGGCAGTG AGGAGGAGGA TATGGATGCA CTTTTGAACA 240 ACAGCCTGCC CCCACCCCAC CCAGAAAATG AAGAGGACCC AGAAGAGGAT TTGTCAGAAA 300 CAGAGACTCC AAAGCTCAAG AAGAAGAAAA AGCCTAAGAA ACCTCGGGAC CCTAAAATCC 360 CTAAGAGCAA GCGCCAAAAA AAGGAGCGTA TGCTCTTATG CCGGCAGCTG GGGGACAGCT 420 CTGGGGAGGG GCCAGAGTTT GTGGAGGAGG AGGAAGAGGT GGCTCTGCGC TCAGACAGTG 480 AGGGCAGCGA CTATACTCCT GGCAAGAAGA AGAAGAAGAA GCTTGGACCT AAGAAAGAGA 540 AGAAGAGCAA ATCCAAGCGG AAGGAGGAGG AGGAGGAGGA GGATGATGAT GATGATTCAA 600 AGGAGCCTAA ATCATCTGCT CAGCTCCTGG AAGACTGGGG CATGGAAGAC ATTGACCACG 660 TGTTCTCAGA GGAGGATTAT CGAACCCTCA CCAACTACAA GGCCTTCAGC CAGTTTGTCA 720 GACCCCTCAT TGCTGCCAAA AATCCCAAGA TTGCTGTCTC CAAGATGATG ATGGTTTTGG 780 GTGCAAAATG GCGGGAGTTC AGTACCAATA ACCCCTTCAA AGGCAGTTCT GGGGCATCAG 840 TGGCAGCTGC GGCAGCAGCA GCGGTAGCTG TGGTGGAGAG CATGGTGACA GCCACTGAGG 900 TTGCACCACC ACCTCCCCCT GTGGAGGTGC CTATCCGCAA GGCCAAGACC AAGGAGGGCA 960 AAGGTCCCAA TGCTCGGAGG AAGCCCAAGG GCAGCCCTCG TGTACCTGAT GCCAAGAAGC 1020 CTAAACCCAA GAAAGTAGCT CCCCTGAAAA TCAAGCTGGG AGGTTTTGGT TCCAAGCGTA 1080 AGAGATCCTC GAGTGAGGAT GATGACTTAG ATGTGGAATC TGACTTCGAT GATGCCAGTA 1140 TCAATAGCTA TTCTGTTTCT GATGGTTCCA CCAGCCGTAG TAGCCGCAGC CGCAAGAAAC 1200 TCCGAACCAC TAAAAAGAAA AAGAAAGGCG AGGAGGAGGT GACTGCTGTG GATGGTTATG 1260 AGACAGACCA CCAGGACTAT TGCGAGGTGT GCCAGCAAGG CGGTGAGATC ATCCTGTGTG 1320 ATACCTGTCC CCGTGCTTAC CACATGGTCT GCCTGGATCC CGACATGGAG AAGGCTCCCG 1380 AGGGCAAGTG GAGCTGCCCA CACTGCGAGA AGGAAGGCAT CCAGTGGGAA GCTAAAGAGG 1440 ACAATTCGGA GGGTGAGGAG ATCCTGGAAG AGGTTGGGGG AGACCTCGAA GAGGAGGATG 1500 ACCACCATAT GGAATTCTGT CGGGTCTGCA AGGATGGTGG GGAACTGCTC TGCTGTGATA 1560 CCTGTCCTTC TTCCTACCAC ATCCACTGCC TGAATCCCCC ACTTCCAGAG ATCCCCAACG 1620 GTGAATGGCT CTGTCCCCGT TGTACGTGTC CAGCTCTGAA GGGCAAAGTG CAGAAGATCC 1680 TAATCTGGAA GTGGGGTCAG CCACCATCTC CCACACCAGT GCCTCGGCCT CCAGATGCTG 1740 ATCCCAACAC GCCCTCCCCA AAGCCCTTGG AGGGGCGGCC AGAGCGGCAG TTCTTTGTGA 1800 AATGGCAAGG CATGTCTTAC TGGCACTGCT CCTGGGTTTC TGAACTGCAG CTGGAGCTGC 1860 ACTGTCAGGT GATGTTCCGA AACTATCAGC GGAAGAATGA TATGGATGAG CCACCTTCTG 1920 GGGACTTTGG TGGTGATGAA GAGAAAAGCC GAAAGCGAAA GAACAAGGAC CCTAAATTTG 1980 CAGAGATGGA GGAACGCTTC TATCGCTATG GGATAAAACC CGAGTGGATG ATGATCCACC 2040 GAATCCTCAA CCACAGTGTG GACAAGAAGG GCCACGTCCA CTACTTGATC AAGTGGCGGG 2100 ACTTACCTTA CGATCAGGCT TCTTGGGAGA GTGAGGATGT GGAGATCCAG GATTACGACC 2160 TGTTCAAGCA GAGCTATTGG AATCACAGGG AGTTAATGAG GGGTGAGGAA GGCCGACCAG 2220 GCAAGAAGCT CAAGAAGGTG AAGCTTCGGA AGTTGGAGAG GCCTCCAGAA ACGCCAACAG 2280 TTGATCCAAC AGTGAAGTAT GAGCGACAGC CAGAGTACCT GGATGCTACA GGTGGAACCC 2340 TGCACCCCTA TCAAATGGAG GGCCTGAATT GGTTGCGCTT CTCCTGGGCT CAGGGCACTG 2400 ACACCATCTT GGCTGATGAG ATGGGCCTTG GGAAAACTGT ACAGACAGCA GTCTTCCTGT 2460 ATTCCCTTTA CAAGGAGGGT CATTCCAAAG GCCCCTTCCT AGTGAGCGCC CCTCTTTCTA 2520 CCATCATCAA CTGGGAGCGG GAGTTTGAAA TGTGGGCTCC AGACATGTAT GTCGTAACCT 2580 ATGTGGGTGA CAAGGACAGC CGTGCCATCA TCCGAGAGAA TGAGTTCTCC TTTGAAGACA 2640 ATGCCATTCG TGGTGGCAAG AAGGCCTCCC GCATGAAGAA AGAGGCATCT GTGAAATTCC 2700 ATGTGCTGCT GACATCCTAT GAATTGATCA CCATTGACAT GGCTATTTTG GGCTCTATTG 2760 ATTGGGCCTG CCTCATCGTG GATGAAGCCC ATCGGCTGAA GAACAATCAG TCTAAGTTCT 2820 TCCGGGTATT GAATGGTTAC TCACTCCAGC ACAAGCTGTT GCTGACTGGG ACACCATTAC 2880 AAAACAATCT GGAAGAGTTG TTTCATCTGC TCAACTTTCT CACCCCCGAG AGGTTCCACA 2940 ATTTGGAAGG TTTTTTGGAG GAGTTTGCTG ACATTGCCAA GGAGGACCAG ATAAAAAAAC 3000 TGCATGACAT GCTGGGGCCG CACATGTTGC GGCGGCTCAA AGCCGATGTG TTCAAGAACA 3060 TGCCCTCCAA GACAGAACTA ATTGTGCGTG TGGAGCTGAG CCCTATGCAG AAGAAATACT 3120 ACAAGTACAT CCTCACTCGA AATTTTGAAG CACTCAATGC CCGAGGTGGT GGCAACCAGG 3180 TGTCTCTGCT GAATGTGGTG ATGGATCTTA AGAAGTGCTG CAACCATCCA TACCTCTTCC 3240 CTGTGGCTGC AATGGAAGCT CCTAAGATGC CTAATGGCAT GTATGATGGC AGTGCCCTAA 3300 TCAGAGCATC TGGGAAATTA TTGCTGCTGC AGAAAATGCT CAAGAACCTT AAGGAGGGTG 3360 GGCATCGTGT ACTCATCTTT TCCCAGATGA CCAAGATGCT AGACCTGCTA GAGGATTTCT 3420 TGGAACATGA AGGTTATAAA TACGAACGCA TCGATGGTGG AATCACTGGG AACATGCGGC 3480 AAGAGGCCAT TGACCGCTTC AATGCACCGG GTGCTCAGCA GTTCTGCTTC TTGCTTTCCA 3540 CTCGAGCTGG GGGCCTTGGA ATCAATCTGG CCACTGCTGA CACAGTTATT ATCTATGACT 3600 CTGACTGGAA CCCCCATAAT GACATTCAGG CCTTTAGCAG AGCTCACCGG ATTGGGCAAA 3660 ATAAAAAGGT AATGATCTAC CGGTTTGTGA CCCGTGCGTC AGTGGAGGAG CGCATCACGC 3720 AGGTGGCAAA GAAGAAAATG ATGCTGACGC ATCTAGTGGT GCGGCCTGGG CTGGGCTCCA 3780 AGACTGGATC TATGTCCAAA CAGGAGCTTG ATGATATCCT CAAATTTGGC ACTGAGGAAC 3840 TATTCAAGGA TGAAGCCACT GATGGAGGAG GAGACAACAA AGAGGGAGAA GATAGCAGTG 3900 TTATCCACTA CGATGATAAG GCCATTGAAC GGCTGCTAGA CCGTAACCAG GATGAGACTG 3960 AAGACACAGA ATTGCAGGGC ATGAATGAAT ATTTGAGCTC ATTCAAAGTG GCCCAGTATG 4020 TGGTACGGGA AGAAGAAATG GGGGAGGAAG AGGAGGTAGA ACGGGAAATC ATTAAACAGG 4080 AAGAAAGTGT GGATCCTGAC TACTGGGAGA AATTGCTGCG GCACCATTAT GAGCAGCAGC 4140 AAGAAGATCT AGCCCGAAAT CTGGGCAAAG GAAAAAGAAT CCGTAAACAG GTCAACTACA 4200 ATGATGGCTC CCAGGAGGAC CGAGATTGGC AGGACGACCA GTCCGACAAC CAGTCCGATT 4260 ACTCAGTGGC TTCAGAGGAA GGTGATGAAG ACTTTGATGA ACGTTCAGAA GCTCCCCGTA 4320 GGCCCAGTCG TAAGGGCCTG CGGAATGATA AAGATAAGCC ATTGCCTCCT CTGTTGGCCC 4380 GTGTTGGTGG GAATATTGAA GTACTTGGTT TTAATGCTCG TCAGCGAAAA GCCTTTCTTA 4440 ATGCAATTAT GCGATATGGT ATGCCACCTC AGGATGCTTT TACTACCCAG TGGCTTGTAA 4500 GAGACCTGCG AGGCAAATCA GAGAAAGAGT TCAAGGCATA TGTCTCTCTT TTCATGCGGC 4560 ATTTATGTGA GCCGGGGGCA GATGGGGCTG AGACCTTTGC TGATGGTGTC CCCCGAGAAG 4620 GCCTGTCTCG CCAGCATGTC CTTACTAGAA TTGGTGTTAT GTCTTTGATT CGCAAGAAGG 4680 TTCAGGAGTT TGAACATGTT AATGGGCGCT GGAGCATGCC TGAACTGGCT GAGGTGGAGG 4740 AAAACAAGAA GATGTCCCAG CCAGGGTCAC CCTCCCCAAA AACTCCTACA CCCTCCACTC 4800 CAGGGGACAC GCAGCCCAAC ACTCCTGCAC CTGTCCCACC TGCTGAAGAT GGGATAAAAA 4860 TAGAGGAAAA TAGCCTCAAA GAAGAAGAGA GCATAGAAGG AGAAAAGGAG GTTAAATCTA 4920 CAGCCCCTGA GACTGCCATT GAGTGTACAC AGGCCCCTGC CCCTGCCTCA GAGGATGAAA 4980 AGGTCGTTGT TGAACCCCCT GAGGGAGAGG AGAAAGTGGA AAAGGCAGAG GTGAAGGAGA 5040 GAACAGAGGA ACCTATGGAG ACAGAGCCCA AAGGTGCTGC TGATGTAGAG AAGGTGGAGG 5100 AAAAGTCAGC AATAGATCTG ACCCCTATTG TGGTAGAAGA CAAAGAAGAG AAGAAAGAAG 5160 AAGAAGAGAA AAAAGAGGTG ATGCTTCAGA ATGGAGAGAC CCCCAAGGAC CTGAATGATG 5220 AGAAACAGAA GAAAAATATT AAACAACGTT TCATGTTTAA CATTGCAGAT GGTGGTTTTA 5280 CTGAGTTGCA CTCCCTTTGG CAGAATGAAG AGCGGGCAGC CACAGTTACC AAGAAGACTT 5340 ATGAGATCTG GCATCGACGG CATGACTACT GGCTGCTAGC CGGCATTATA AACCATGGCT 5400 ATGCCCGGTG GCAAGACATC CAGAATGACC CACGCTATGC CATCCTCAAT GAGCCTTTCA 5460 AGGGTGAAAT GAACCGTGGC AATTTCTTAG AGATCAAGAA TAAATTTCTA GCTCGAAGGT 5520 TTAAGCTCTT AGAACAAGCT CTGGTGATTG AGGAACAGCT GCGCCGGGCT GCTTACTTGA 5580 ACATGTCAGA AGACCCTTCT CACCCTTCCA TGGCCCTCAA CACCCGCTTT GCTGAGGTGG 5640 AGTGTTTGGC GGAAAGTCAT CAGCACCTGT CCAAGGAGTC AATGGCAGGA AACAAGCCAG 5700 CCAATGCAGT CCTGCACAAA GTTCTGAAAC AGCTGGAAGA ACTGCTGAGT GACATGAAAG 5760 CTGATGTGAC TCGACTCCCA GCTACCATTG CCCGAATTCC CCCAGTTGCT GTGAGGTTAC 5820 AGATGTCAGA GCGTAACATT CTCAGCCGCC TGGCAAACCG GGCACCCGAA CCTACCCCAC 5880 AGCAGGTAGC CCAGCAGCAG TGAAGATGCA GACTGATACC ACCTCCACCG CTGAGCAGTG 5940 ACCTTCCTCA CTTTCTCTTG TCCCAGCTTC TCCCCTGGGG GCCTGAGAGA CCCTCACCTT 6000 CCTTCTGCCC ATCTTCCATG TTGTAAAGGA ACAGCCCCAG TGCACTGGGG GAGGGGAGGG 6060 AGTGAGGGGC AGTGGTGCCC TTCCTGCAGA AGAGACATGC AGCAGTAGCG CTGGCGCCAT 6120 CTGCAGGAGC TGGCGGGCTG GCCTTCTGGA CCCTGGCTTC TCCCCACTGT AACGCCTGTT 6180 ACACACAAAC TGTTGTGGGT TCCTGCCAGG CTTGAAGAAA ATGATCTGAA TTTTTTCCTC 6240 CTTTTGGTTT TATTTTGTTG GTTTATTTTG TGTTTTCTTT TCTCCTTTTT GGGGGGTATT 6300 CAGAGTGGGC TGGGCCCCTG GGCGAGACAC AGCTACCTCT GTTGGCATCT TTTTAATACC 6360 AGGAACCCAG CGGCTCTAGC CACTGAGCGG CTAAATGAAA TAAAGTGGAA AAAAAAAAAA 6420 AGGAAAAAAC CAAAAGCATA AAAAACCACA GCAAATTTCT TGATGAAAAT TGAAAATAAA 6480 AGTTTCCTTG TATTTT
6497Nucleotide Fasta Sequence
>ENSP00000349508.2|DCD|Homo sapiens ATTTTCCCCCCTTCGGCCGCGGCGAGGAGGAGCCGGAGCGGGAGTGACACCGAGCCGGACCCAGCGCGACCTGCGGCGGCTCCGGGTGACTCGGGCCAGTGTAGAGGTCCTCAGGCCGCCGGCAGGAGCAGCTGGGCCAATTCCCTGGCCGGGAGCGGAAGGGGATGGCGTCGGGCCTGGGCTCCCCGTCCCCCTGCTCGGCGGGCAGTGAGGAGGAGGATATGGATGCACTTTTGAACAACAGCCTGCCCCCACCCCACCCAGAAAATGAAGAGGACCCAGAAGAGGATTTGTCAGAAACAGAGACTCCAAAGCTCAAGAAGAAGAAAAAGCCTAAGAAACCTCGGGACCCTAAAATCCCTAAGAGCAAGCGCCAAAAAAAGGAGCGTATGCTCTTATGCCGGCAGCTGGGGGACAGCTCTGGGGAGGGGCCAGAGTTTGTGGAGGAGGAGGAAGAGGTGGCTCTGCGCTCAGACAGTGAGGGCAGCGACTATACTCCTGGCAAGAAGAAGAAGAAGAAGCTTGGACCTAAGAAAGAGAAGAAGAGCAAATCCAAGCGGAAGGAGGAGGAGGAGGAGGAGGATGATGATGATGATTCAAAGGAGCCTAAATCATCTGCTCAGCTCCTGGAAGACTGGGGCATGGAAGACATTGACCACGTGTTCTCAGAGGAGGATTATCGAACCCTCACCAACTACAAGGCCTTCAGCCAGTTTGTCAGACCCCTCATTGCTGCCAAAAATCCCAAGATTGCTGTCTCCAAGATGATGATGGTTTTGGGTGCAAAATGGCGGGAGTTCAGTACCAATAACCCCTTCAAAGGCAGTTCTGGGGCATCAGTGGCAGCTGCGGCAGCAGCAGCGGTAGCTGTGGTGGAGAGCATGGTGACAGCCACTGAGGTTGCACCACCACCTCCCCCTGTGGAGGTGCCTATCCGCAAGGCCAAGACCAAGGAGGGCAAAGGTCCCAATGCTCGGAGGAAGCCCAAGGGCAGCCCTCGTGTACCTGATGCCAAGAAGCCTAAACCCAAGAAAGTAGCTCCCCTGAAAATCAAGCTGGGAGGTTTTGGTTCCAAGCGTAAGAGATCCTCGAGTGAGGATGATGACTTAGATGTGGAATCTGACTTCGATGATGCCAGTATCAATAGCTATTCTGTTTCTGATGGTTCCACCAGCCGTAGTAGCCGCAGCCGCAAGAAACTCCGAACCACTAAAAAGAAAAAGAAAGGCGAGGAGGAGGTGACTGCTGTGGATGGTTATGAGACAGACCACCAGGACTATTGCGAGGTGTGCCAGCAAGGCGGTGAGATCATCCTGTGTGATACCTGTCCCCGTGCTTACCACATGGTCTGCCTGGATCCCGACATGGAGAAGGCTCCCGAGGGCAAGTGGAGCTGCCCACACTGCGAGAAGGAAGGCATCCAGTGGGAAGCTAAAGAGGACAATTCGGAGGGTGAGGAGATCCTGGAAGAGGTTGGGGGAGACCTCGAAGAGGAGGATGACCACCATATGGAATTCTGTCGGGTCTGCAAGGATGGTGGGGAACTGCTCTGCTGTGATACCTGTCCTTCTTCCTACCACATCCACTGCCTGAATCCCCCACTTCCAGAGATCCCCAACGGTGAATGGCTCTGTCCCCGTTGTACGTGTCCAGCTCTGAAGGGCAAAGTGCAGAAGATCCTAATCTGGAAGTGGGGTCAGCCACCATCTCCCACACCAGTGCCTCGGCCTCCAGATGCTGATCCCAACACGCCCTCCCCAAAGCCCTTGGAGGGGCGGCCAGAGCGGCAGTTCTTTGTGAAATGGCAAGGCATGTCTTACTGGCACTGCTCCTGGGTTTCTGAACTGCAGCTGGAGCTGCACTGTCAGGTGATGTTCCGAAACTATCAGCGGAAGAATGATATGGATGAGCCACCTTCTGGGGACTTTGGTGGTGATGAAGAGAAAAGCCGAAAGCGAAAGAACAAGGACCCTAAATTTGCAGAGATGGAGGAACGCTTCTATCGCTATGGGATAAAACCCGAGTGGATGATGATCCACCGAATCCTCAACCACAGTGTGGACAAGAAGGGCCACGTCCACTACTTGATCAAGTGGCGGGACTTACCTTACGATCAGGCTTCTTGGGAGAGTGAGGATGTGGAGATCCAGGATTACGACCTGTTCAAGCAGAGCTATTGGAATCACAGGGAGTTAATGAGGGGTGAGGAAGGCCGACCAGGCAAGAAGCTCAAGAAGGTGAAGCTTCGGAAGTTGGAGAGGCCTCCAGAAACGCCAACAGTTGATCCAACAGTGAAGTATGAGCGACAGCCAGAGTACCTGGATGCTACAGGTGGAACCCTGCACCCCTATCAAATGGAGGGCCTGAATTGGTTGCGCTTCTCCTGGGCTCAGGGCACTGACACCATCTTGGCTGATGAGATGGGCCTTGGGAAAACTGTACAGACAGCAGTCTTCCTGTATTCCCTTTACAAGGAGGGTCATTCCAAAGGCCCCTTCCTAGTGAGCGCCCCTCTTTCTACCATCATCAACTGGGAGCGGGAGTTTGAAATGTGGGCTCCAGACATGTATGTCGTAACCTATGTGGGTGACAAGGACAGCCGTGCCATCATCCGAGAGAATGAGTTCTCCTTTGAAGACAATGCCATTCGTGGTGGCAAGAAGGCCTCCCGCATGAAGAAAGAGGCATCTGTGAAATTCCATGTGCTGCTGACATCCTATGAATTGATCACCATTGACATGGCTATTTTGGGCTCTATTGATTGGGCCTGCCTCATCGTGGATGAAGCCCATCGGCTGAAGAACAATCAGTCTAAGTTCTTCCGGGTATTGAATGGTTACTCACTCCAGCACAAGCTGTTGCTGACTGGGACACCATTACAAAACAATCTGGAAGAGTTGTTTCATCTGCTCAACTTTCTCACCCCCGAGAGGTTCCACAATTTGGAAGGTTTTTTGGAGGAGTTTGCTGACATTGCCAAGGAGGACCAGATAAAAAAACTGCATGACATGCTGGGGCCGCACATGTTGCGGCGGCTCAAAGCCGATGTGTTCAAGAACATGCCCTCCAAGACAGAACTAATTGTGCGTGTGGAGCTGAGCCCTATGCAGAAGAAATACTACAAGTACATCCTCACTCGAAATTTTGAAGCACTCAATGCCCGAGGTGGTGGCAACCAGGTGTCTCTGCTGAATGTGGTGATGGATCTTAAGAAGTGCTGCAACCATCCATACCTCTTCCCTGTGGCTGCAATGGAAGCTCCTAAGATGCCTAATGGCATGTATGATGGCAGTGCCCTAATCAGAGCATCTGGGAAATTATTGCTGCTGCAGAAAATGCTCAAGAACCTTAAGGAGGGTGGGCATCGTGTACTCATCTTTTCCCAGATGACCAAGATGCTAGACCTGCTAGAGGATTTCTTGGAACATGAAGGTTATAAATACGAACGCATCGATGGTGGAATCACTGGGAACATGCGGCAAGAGGCCATTGACCGCTTCAATGCACCGGGTGCTCAGCAGTTCTGCTTCTTGCTTTCCACTCGAGCTGGGGGCCTTGGAATCAATCTGGCCACTGCTGACACAGTTATTATCTATGACTCTGACTGGAACCCCCATAATGACATTCAGGCCTTTAGCAGAGCTCACCGGATTGGGCAAAATAAAAAGGTAATGATCTACCGGTTTGTGACCCGTGCGTCAGTGGAGGAGCGCATCACGCAGGTGGCAAAGAAGAAAATGATGCTGACGCATCTAGTGGTGCGGCCTGGGCTGGGCTCCAAGACTGGATCTATGTCCAAACAGGAGCTTGATGATATCCTCAAATTTGGCACTGAGGAACTATTCAAGGATGAAGCCACTGATGGAGGAGGAGACAACAAAGAGGGAGAAGATAGCAGTGTTATCCACTACGATGATAAGGCCATTGAACGGCTGCTAGACCGTAACCAGGATGAGACTGAAGACACAGAATTGCAGGGCATGAATGAATATTTGAGCTCATTCAAAGTGGCCCAGTATGTGGTACGGGAAGAAGAAATGGGGGAGGAAGAGGAGGTAGAACGGGAAATCATTAAACAGGAAGAAAGTGTGGATCCTGACTACTGGGAGAAATTGCTGCGGCACCATTATGAGCAGCAGCAAGAAGATCTAGCCCGAAATCTGGGCAAAGGAAAAAGAATCCGTAAACAGGTCAACTACAATGATGGCTCCCAGGAGGACCGAGATTGGCAGGACGACCAGTCCGACAACCAGTCCGATTACTCAGTGGCTTCAGAGGAAGGTGATGAAGACTTTGATGAACGTTCAGAAGCTCCCCGTAGGCCCAGTCGTAAGGGCCTGCGGAATGATAAAGATAAGCCATTGCCTCCTCTGTTGGCCCGTGTTGGTGGGAATATTGAAGTACTTGGTTTTAATGCTCGTCAGCGAAAAGCCTTTCTTAATGCAATTATGCGATATGGTATGCCACCTCAGGATGCTTTTACTACCCAGTGGCTTGTAAGAGACCTGCGAGGCAAATCAGAGAAAGAGTTCAAGGCATATGTCTCTCTTTTCATGCGGCATTTATGTGAGCCGGGGGCAGATGGGGCTGAGACCTTTGCTGATGGTGTCCCCCGAGAAGGCCTGTCTCGCCAGCATGTCCTTACTAGAATTGGTGTTATGTCTTTGATTCGCAAGAAGGTTCAGGAGTTTGAACATGTTAATGGGCGCTGGAGCATGCCTGAACTGGCTGAGGTGGAGGAAAACAAGAAGATGTCCCAGCCAGGGTCACCCTCCCCAAAAACTCCTACACCCTCCACTCCAGGGGACACGCAGCCCAACACTCCTGCACCTGTCCCACCTGCTGAAGATGGGATAAAAATAGAGGAAAATAGCCTCAAAGAAGAAGAGAGCATAGAAGGAGAAAAGGAGGTTAAATCTACAGCCCCTGAGACTGCCATTGAGTGTACACAGGCCCCTGCCCCTGCCTCAGAGGATGAAAAGGTCGTTGTTGAACCCCCTGAGGGAGAGGAGAAAGTGGAAAAGGCAGAGGTGAAGGAGAGAACAGAGGAACCTATGGAGACAGAGCCCAAAGGTGCTGCTGATGTAGAGAAGGTGGAGGAAAAGTCAGCAATAGATCTGACCCCTATTGTGGTAGAAGACAAAGAAGAGAAGAAAGAAGAAGAAGAGAAAAAAGAGGTGATGCTTCAGAATGGAGAGACCCCCAAGGACCTGAATGATGAGAAACAGAAGAAAAATATTAAACAACGTTTCATGTTTAACATTGCAGATGGTGGTTTTACTGAGTTGCACTCCCTTTGGCAGAATGAAGAGCGGGCAGCCACAGTTACCAAGAAGACTTATGAGATCTGGCATCGACGGCATGACTACTGGCTGCTAGCCGGCATTATAAACCATGGCTATGCCCGGTGGCAAGACATCCAGAATGACCCACGCTATGCCATCCTCAATGAGCCTTTCAAGGGTGAAATGAACCGTGGCAATTTCTTAGAGATCAAGAATAAATTTCTAGCTCGAAGGTTTAAGCTCTTAGAACAAGCTCTGGTGATTGAGGAACAGCTGCGCCGGGCTGCTTACTTGAACATGTCAGAAGACCCTTCTCACCCTTCCATGGCCCTCAACACCCGCTTTGCTGAGGTGGAGTGTTTGGCGGAAAGTCATCAGCACCTGTCCAAGGAGTCAATGGCAGGAAACAAGCCAGCCAATGCAGTCCTGCACAAAGTTCTGAAACAGCTGGAAGAACTGCTGAGTGACATGAAAGCTGATGTGACTCGACTCCCAGCTACCATTGCCCGAATTCCCCCAGTTGCTGTGAGGTTACAGATGTCAGAGCGTAACATTCTCAGCCGCCTGGCAAACCGGGCACCCGAACCTACCCCACAGCAGGTAGCCCAGCAGCAGTGAAGATGCAGACTGATACCACCTCCACCGCTGAGCAGTGACCTTCCTCACTTTCTCTTGTCCCAGCTTCTCCCCTGGGGGCCTGAGAGACCCTCACCTTCCTTCTGCCCATCTTCCATGTTGTAAAGGAACAGCCCCAGTGCACTGGGGGAGGGGAGGGAGTGAGGGGCAGTGGTGCCCTTCCTGCAGAAGAGACATGCAGCAGTAGCGCTGGCGCCATCTGCAGGAGCTGGCGGGCTGGCCTTCTGGACCCTGGCTTCTCCCCACTGTAACGCCTGTTACACACAAACTGTTGTGGGTTCCTGCCAGGCTTGAAGAAAATGATCTGAATTTTTTCCTCCTTTTGGTTTTATTTTGTTGGTTTATTTTGTGTTTTCTTTTCTCCTTTTTGGGGGGTATTCAGAGTGGGCTGGGCCCCTGGGCGAGACACAGCTACCTCTGTTGGCATCTTTTTAATACCAGGAACCCAGCGGCTCTAGCCACTGAGCGGCTAAATGAAATAAAGTGGAAAAAAAAAAAAAGGAAAAAACCAAAAGCATAAAAAACCACAGCAAATTTCTTGATGAAAATTGAAAATAAAAGTTTCCTTGTATTTT
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Sequence Source |
Ensembl |
Keyword |
KW-0002--3D-structure KW-0007--Acetylation KW-0025--Alternative splicing KW-0067--ATP-binding KW-0156--Chromatin regulator KW-0181--Complete proteome KW-0963--Cytoplasm KW-0206--Cytoskeleton KW-0238--DNA-binding KW-0347--Helicase KW-0378--Hydrolase KW-1017--Isopeptide bond KW-0479--Metal-binding KW-0547--Nucleotide-binding 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 KW-0862--Zinc KW-0863--Zinc-finger --
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Interpro |
IPR028725--CHD4 IPR012957--CHD_C2 IPR012958--CHD_N IPR000953--Chromo/shadow_dom IPR023780--Chromo_domain IPR016197--Chromodomain-like IPR002464--DNA/RNA_helicase_DEAH_CS IPR009462--DUF1086 IPR009463--DUF1087 IPR014001--Helicase_ATP-bd IPR001650--Helicase_C IPR027417--P-loop_NTPase IPR000330--SNF2_N IPR019786--Zinc_finger_PHD-type_CS IPR011011--Znf_FYVE_PHD IPR001965--Znf_PHD IPR019787--Znf_PHD-finger IPR013083--Znf_RING/FYVE/PHD
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PROSITE |
PS00598--CHROMO_1 PS50013--CHROMO_2 PS00690--DEAH_ATP_HELICASE PS51192--HELICASE_ATP_BIND_1 PS51194--HELICASE_CTER PS01359--ZF_PHD_1 PS50016--ZF_PHD_2
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Pfam |
PF08074--CHDCT2 PF08073--CHDNT PF00385--Chromo PF06461--DUF1086 PF06465--DUF1087 PF00271--Helicase_C PF00628--PHD PF00176--SNF2_N
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Gene Ontology |
GO:0005813--C:centrosome GO:0005737--C:cytoplasm GO:0016020--C:membrane GO:0000790--C:nuclear chromatin GO:0005654--C:nucleoplasm GO:0005634--C:nucleus GO:0016581--C:NuRD complex GO:0043234--C:protein complex GO:0032993--C:protein-DNA complex GO:0005524--F:ATP binding GO:0004003--F:ATP-dependent DNA helicase activity GO:0003677--F:DNA binding GO:0004407--F:histone deacetylase activity GO:0001103--F:RNA polymerase II repressing transcription factor binding GO:0008270--F:zinc ion binding GO:0043044--P:ATP-dependent chromatin remodeling GO:0032508--P:DNA duplex unwinding GO:0016575--P:histone deacetylation GO:0000122--P:negative regulation of transcription from RNA polymerase II promoter GO:1901796--P:regulation of signal transduction by p53 class mediator GO:0006357--P:regulation of transcription from RNA polymerase II promoter GO:0051225--P:spindle assembly GO:0072553--P:terminal button organization GO:0006351--P:transcription, DNA-templated
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Orthology |
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Created Date |
25-Jun-2016 |