首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Histone H3R17me2a mark recruits human RNA Polymerase-Associated Factor 1 Complex to activate transcription
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Histone H3R17me2a mark recruits human RNA Polymerase-Associated Factor 1 Complex to activate transcription

机译:组蛋白H3R17me2a标记募集人类RNA聚合酶相关因子1复合物来激活转录

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摘要

The histone coactivator-associated arginine methyJtransferase 1 (CARM1) is a coactivator for a number of transcription factors, including nuclear receptors. Although CARM1 and its asymmetrically deposited dimethylation at histone H3 arginine 17 (H3R17me2a) are associated with transcription activation, the mechanism by which CARM1 activates transcription remains unclear. Using an unbiased biochemical approach, we discovered that the transcription elongation-associated PAF1 complex (PAF1c) directly interacts with H3R17me2a. PAF1c binds to histone H3 tails harboring dimethylation at R17 in CARM1-methylated histone octamers. Knockdown of either PAF1c subunits or CARM1 affected transcription of CARM1regulated, estrogen-responsive genes. Furthermore, either CARM1 knockdown or CARM1 enzyme-deficient mutant knockin resulted in decreased H3R17me2a accompanied by the reduction of PAF1c occupancy at the proximal promoter estrogen-responsive elements. In contrast, PAF1c knockdown elicited no effects on H3R17me2a but reduced the H3K4me3 level at estrogen-responsive elements. These observations suggest that, apart from PAFIc's established roles in directing histone modifications, PAF1c acts as an arginine methyl histone effectorthat is recruited to promoters and activates a subset of genes, including targets of estrogen signaling.
机译:组蛋白共激活因子相关的精氨酸甲基转移酶1(CARM1)是许多转录因子(包括核受体)的共激活因子。尽管CARM1及其在组蛋白H3精氨酸17(H3R17me2a)上的不对称沉积的二甲基化与转录激活有关,但CARM1激活转录的机制仍不清楚。使用无偏生化方法,我们发现与转录延伸相关的PAF1复合物(PAF1c)直接与H3R17me2a相互作用。 PAF1c与在CARM1甲基化的组蛋白八聚体中R17处具有二甲基化的组蛋白H3尾部结合。 PAF1c亚基或CARM1的基因敲低影响CARM1调节的雌激素响应基因的转录。此外,无论是CARM1敲低还是CARM1酶缺陷型突变敲除都导致H3R17me2a减少,同时在近端启动子雌激素反应元件上的PAF1c占用减少。相反,PAF1c敲低对H3R17me2a没有影响,但降低了雌激素反应元件的H3K4me3水平。这些观察结果表明,除了PAFIc在指导组蛋白修饰中已确立的作用外,PAF1c还充当精氨酸甲基组蛋白效应子,被募集至启动子并激活基因的子集,包括雌激素信号转导的靶标。

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