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   Ash1l Methylates Lys36 of Histone H3 Independently of Transcriptional Elongation to Counteract Polycomb Silencing  
   
نویسنده miyazaki h. ,higashimoto k. ,yada y. ,endo t.a. ,sharif j. ,komori t. ,matsuda m. ,koseki y. ,nakayama m. ,soejima h. ,handa h. ,koseki h. ,hirose s. ,nishioka k.
منبع plos genetics - 2013 - دوره : 9 - شماره : 11
چکیده    Molecular mechanisms for the establishment of transcriptional memory are poorly understood. 5,6-dichloro-1-d-ribofuranosyl-benzimidazole (drb) is a p-tefb kinase inhibitor that artificially induces the poised rna polymerase ii (rnapii),thereby manifesting intermediate steps for the establishment of transcriptional activation. here,using genetics and drb,we show that mammalian absent,small,or homeotic discs 1-like (ash1l),a member of the trithorax group proteins,methylates lys36 of histone h3 to promote the establishment of hox gene expression by counteracting polycomb silencing. importantly,we found that ash1l-dependent lys36 di-,tri-methylation of histone h3 in a coding region and exclusion of polycomb group proteins occur independently of transcriptional elongation in embryonic stem (es) cells,although both were previously thought to be consequences of transcription. genome-wide analyses of histone h3 lys36 methylation under drb treatment have suggested that binding of the retinoic acid receptor (rar) to a certain genomic region promotes trimethylation in the rar-associated gene independent of its ongoing transcription. moreover,drb treatment unveils a parallel response between lys36 methylation of histone h3 and occupancy of either tip60 or mof in a region-dependent manner. we also found that brg1 is another key player involved in the response. our results uncover a novel regulatory cascade orchestrated by ash1l with rar and provide insights into mechanisms underlying the establishment of the transcriptional activation that counteracts polycomb silencing. © 2013 miyazaki et al.
آدرس division of molecular genetics and epigenetics,department of biomolecular sciences,saga university,5-1-1 nabeshima,saga city,saga,japan,precursory research for embryonic science and technology (presto),japan science and technology agency (jst),4-1-8 honcho,kawaguchi city,saitama, Japan, division of molecular genetics and epigenetics,department of biomolecular sciences,saga university,5-1-1 nabeshima,saga city,saga, Japan, division of gene expression,department of developmental genetics,national institute of genetics,1111 yata,mishima city,shizuoka, Japan, riken center for integrative medical sciences,riken yokohama institute,1-7-22 suehiro-cho,tsurumi-ku,yokohama city,kanagawa, Japan, riken center for integrative medical sciences,riken yokohama institute,1-7-22 suehiro-cho,tsurumi-ku,yokohama city,kanagawa, Japan, division of gene expression,department of developmental genetics,national institute of genetics,1111 yata,mishima city,shizuoka,japan,graduate school of bioscience and biotechnology,tokyo institute of technology,4259 nagatsuta,yokohama city,kanagawa, Japan, riken center for integrative medical sciences,riken yokohama institute,1-7-22 suehiro-cho,tsurumi-ku,yokohama city,kanagawa, Japan, riken center for integrative medical sciences,riken yokohama institute,1-7-22 suehiro-cho,tsurumi-ku,yokohama city,kanagawa, Japan, laboratory of medical genomics,department of human genome research,kazusa dna research institute,2-6-7 kazusa-kamatari,kisarazu city,chiba, Japan, division of molecular genetics and epigenetics,department of biomolecular sciences,saga university,5-1-1 nabeshima,saga city,saga, Japan, graduate school of bioscience and biotechnology,tokyo institute of technology,4259 nagatsuta,yokohama city,kanagawa, Japan, riken center for integrative medical sciences,riken yokohama institute,1-7-22 suehiro-cho,tsurumi-ku,yokohama city,kanagawa,japan,core research for evolutional science and technology (crest),japan science and technology agency (jst),4-1-8 honcho,kawaguchi city,saitama, Japan, division of gene expression,department of developmental genetics,national institute of genetics,1111 yata,mishima city,shizuoka, Japan, division of molecular genetics and epigenetics,department of biomolecular sciences,saga university,5-1-1 nabeshima,saga city,saga,japan,precursory research for embryonic science and technology (presto),japan science and technology agency (jst),4-1-8 honcho,kawaguchi city,saitama,japan,division of gene expression,department of developmental genetics,national institute of genetics,1111 yata,mishima city,shizuoka, Japan
 
     
   
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