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一种新型的 RNA pol II CTD 与 mRNA 加帽酶的相互作用位点对于其变构激活是必需的。

A novel RNA pol II CTD interaction site on the mRNA capping enzyme is essential for its allosteric activation.

机构信息

Computational Biology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.

Centre for Gene Regulation and Expression, School of Life Sciences, University of Dundee, Dundee DD1 5EH, UK.

出版信息

Nucleic Acids Res. 2021 Apr 6;49(6):3109-3126. doi: 10.1093/nar/gkab130.

Abstract

Recruitment of the mRNA capping enzyme (CE/RNGTT) to the site of transcription is essential for the formation of the 5' mRNA cap, which in turn ensures efficient transcription, splicing, polyadenylation, nuclear export and translation of mRNA in eukaryotic cells. The CE GTase is recruited and activated by the Serine-5 phosphorylated carboxyl-terminal domain (CTD) of RNA polymerase II. Through the use of molecular dynamics simulations and enhanced sampling techniques, we provide a systematic and detailed characterization of the human CE-CTD interface, describing the effect of the CTD phosphorylation state, length and orientation on this interaction. Our computational analyses identify novel CTD interaction sites on the human CE GTase surface and quantify their relative contributions to CTD binding. We also identify, for the first time, allosteric connections between the CE GTase active site and the CTD binding sites, allowing us to propose a mechanism for allosteric activation. Through binding and activity assays we validate the novel CTD binding sites and show that the CDS2 site is essential for CE GTase activity stimulation. Comparison of the novel sites with cocrystal structures of the CE-CTD complex in different eukaryotic taxa reveals that this interface is considerably more conserved than previous structures have indicated.

摘要

募集的 mRNA 加帽酶 (CE / RNGTT) 到转录部位是必不可少的 5' mRNA 帽的形成,这反过来又确保了有效的转录、剪接、多聚腺苷酸化、核输出和翻译的 mRNA 在真核细胞。CE GTase 被募集和激活的丝氨酸 5 磷酸化羧基末端结构域 (CTD) 的 RNA 聚合酶 II。通过使用分子动力学模拟和增强采样技术,我们提供了一个系统和详细的人类 CE-CTD 界面的描述,描述 CTD 磷酸化状态、长度和方向对这种相互作用的影响。我们的计算分析确定了新型 CTD 相互作用位点的人类 CE GTase 表面和量化它们的相对贡献的 CTD 结合。我们还确定,第一次,别构连接 CE GTase 活性位点和 CTD 结合位点,使我们能够提出一个机制的变构激活。通过结合和活性测定验证了新型 CTD 结合位点,并表明 CDS2 位点是 CE GTase 活性刺激的关键。新型站点的比较与 cocrystal 结构的 CE-CTD 复杂的不同真核生物税揭示了这个界面是相当更保守比以前的结构已经表明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61e2/8034621/f7b5fb48f802/gkab130fig3.jpg

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