首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Mediator Complex Recruits Epigenetic Regulators via Its Two Cyclin-dependent Kinase Subunits to Repress Transcription of Immune Response Genes
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Mediator Complex Recruits Epigenetic Regulators via Its Two Cyclin-dependent Kinase Subunits to Repress Transcription of Immune Response Genes

机译:介体复合物通过其两个细胞周期蛋白依赖性激酶亚基招募表观遗传调控因子以抑制免疫反应基因的转录。

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摘要

The Mediator complex (Mediator) plays pivotal roles in activating transcription by RNA polymerase II, but relatively little is known about its roles in repression. Here, we identified the histone arginine methyltransferase PRMT5 and WD repeat protein 77/methylosome protein 50 (WDR77/MEP50) as Mediator cyclin-dependent kinase (CDK)-interacting proteins and studied the roles of PRMT5 in the transcriptional regulation of CCAAT enhancer-binding protein (C/EBP) β target genes. First, we purified CDK8- and CDK19-containing complexes from HeLa nuclear extracts and subjected these purified complexes to mass spectrometric analyses. These experiments revealed that two Mediator CDKs, CDK8 and CDK19, individually interact with PRMT5 and WDR77, and their interactions with PRMT5 cause transcriptional repression of C/EBPβ target genes by regulating symmetric dimethylation of histone H4 arginine 3 (H4R3me2s) in the promoter regions of those genes. Furthermore, the recruitment of the DNA methyltransferase DNMT3A correlated with H4R3 dimethylation potentially leading to DNA methylation at the promoter proximal region and tight inhibition of preinitiation complex formation. In vertebrates, C/EBPβ regulates many genes involved in immune responses and cell differentiation. These findings shed light on the molecular mechanisms of the repressive roles of Mediator CDKs in transcription of C/EBPβ target genes and might provide clues that enable future studies of the functional associations between Mediators and epigenetic regulation.
机译:介体复合物(Mediator)在通过RNA聚合酶II激活转录中起关键作用,但对其阻遏作用的了解相对较少。在这里,我们确定组蛋白精氨酸甲基转移酶PRMT5和WD重复蛋白77 /甲基脂质体蛋白50(WDR77 / MEP50)是介导细胞周期蛋白依赖性激酶(CDK)的相互作用蛋白,并研究了PRMT5在CCAAT增强子结合的转录调控中的作用。蛋白(C / EBP)β靶基因。首先,我们从HeLa核提取物中纯化了含CDK8和CDK19的复合物,并对这些纯化的复合物进行了质谱分析。这些实验表明,两种介体CDK CDK8和CDK19分别与PRMT5和WDR77相互作用,并且它们与PRMT5的相互作用通过调节组蛋白H4精氨酸3(H4R3me2s)在启动子区域的对称二甲基化作用,引起C /EBPβ目标基因的转录抑制。这些基因。此外,DNA甲基转移酶DNMT3A的募集与H4R3的二甲基化相关,可能导致启动子近端区域的DNA甲基化并严重抑制预启动复合物的形成。在脊椎动物中,C /EBPβ调节涉及免疫反应和细胞分化的许多基因。这些发现阐明了介体CDK在C /EBPβ靶基因转录中的抑制作用的分子机制,并可能提供线索,以使将来能够研究调解人与表观遗传调控之间的功能关联。

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