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Modulation Of Rna Polymerase Ii Subunit Composition By Ubiquitylation

机译:泛素化调节Rna聚合酶II亚基组成。

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Emerging evidence suggests that components of the ubiquitin-pro-teasome system are involved in the regulation of gene expression. A variety of factors, including transcriptional activators, coactivators, and histones, are controlled by ubiquitylation, but the mechanisms through which this modification can function in transcription are generally unknown. Here, we report that the Saccharomyces cerevi-siae protein Asr1 is a RING finger ubiquitin-ligase that binds directly to RNA polymerase II via the carboxyl-terminal domain (CTD) of the largest subunit of the enzyme. We show that interaction of Asr1 with the CTD depends on serine-5 phosphorylation within the CTD and results in ubiquitylation of at least 2 subunits of the enzyme, Rpb1 and Rpb2. Ubiquitylation by Asr1 leads to the ejection of the Rpb4/Rpb7 heterodimer from the polymerase complex and is associated with inactivation of polymerase function. Our data demonstrate that ubiquitylation can directly alter the subunit composition of a core component of the transcriptional machinery and provide a paradigm for how ubiquitin can influence gene activity.
机译:越来越多的证据表明泛素-前体蛋白酶体系统的成分参与基因表达的调节。泛素化控制着多种因素,包括转录激活因子,共激活因子和组蛋白,但是这种修饰在转录中起作用的机制通常是未知的。在这里,我们报告啤酒酵母蛋白Asr1是RING指泛素连接酶,可通过该酶最大亚基的羧基末端结构域(CTD)直接与RNA聚合酶II结合。我们显示Asr1与CTD的相互作用取决于CTD内的丝氨酸5磷酸化,并导致酶Rpb1和Rpb2的至少2个亚基的泛素化。 Asr1的泛素化会导致Rpb4 / Rpb7异二聚体从聚合酶复合物中弹出,并与聚合酶功能失活有关。我们的数据表明,泛素化可以直接改变转录机制核心组件的亚基组成,并为泛素如何影响基因活性提供了范例。

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