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3型Pol III启动子的RNA聚合酶II活性

RNA Polymerase II Activity of Type 3 Pol III Promoters.

作者信息

Gao Zongliang, Herrera-Carrillo Elena, Berkhout Ben

机构信息

Laboratory of Experimental Virology, Department of Medical Microbiology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands.

Laboratory of Experimental Virology, Department of Medical Microbiology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands.

出版信息

Mol Ther Nucleic Acids. 2018 Sep 7;12:135-145. doi: 10.1016/j.omtn.2018.05.001. Epub 2018 May 8.

Abstract

In eukaryotes, three RNA polymerases (Pol I, II, and III) are responsible for the transcription of distinct subsets of genes. Gene-external type 3 Pol III promoters use defined transcription start and termination sites, and they are, therefore, widely used for small RNA expression, including short hairpin RNAs in RNAi applications and guide RNAs in CRISPR-Cas systems. We report that all three commonly used human Pol III promoters (7SK, U6, and H1) mediate luciferase reporter gene expression, which indicates Pol II activity, but to a different extent (H1 ≫ U6 > 7SK). We demonstrate that these promoters can recruit Pol II for transcribing extended messenger transcripts. Intriguingly, selective inhibition of Pol II stimulates the Pol III activity and vice versa, suggesting that two polymerase complexes compete for promoter usage. Pol II initiates transcription at the regular Pol III start site on the 7SK and U6 promoters, but Pol II transcription on the most active H1 promoter starts 8 nt upstream of the Pol III start site. This study provides functional evidence for the close relationship of Pol II and Pol III transcription. These mechanistic insights are important for optimal use of Pol III promoters, and they offer additional flexibility for biotechnology applications of these genetic elements.

摘要

在真核生物中,三种RNA聚合酶(聚合酶I、II和III)负责转录不同的基因子集。基因外部的3型聚合酶III启动子使用特定的转录起始和终止位点,因此,它们被广泛用于小RNA的表达,包括RNA干扰应用中的短发夹RNA和CRISPR-Cas系统中的引导RNA。我们报告称,所有三种常用的人类聚合酶III启动子(7SK、U6和H1)均介导荧光素酶报告基因表达,这表明存在聚合酶II活性,但程度不同(H1≫U6>7SK)。我们证明,这些启动子可以募集聚合酶II来转录延伸的信使转录本。有趣的是,对聚合酶II的选择性抑制会刺激聚合酶III的活性,反之亦然,这表明两种聚合酶复合物在启动子使用上存在竞争。聚合酶II在7SK和U6启动子上的常规聚合酶III起始位点启动转录,但在活性最高的H1启动子上,聚合酶II转录在聚合酶III起始位点上游8个核苷酸处开始。这项研究为聚合酶II和聚合酶III转录之间的密切关系提供了功能证据。这些机制上的见解对于聚合酶III启动子的最佳使用很重要,并且为这些遗传元件的生物技术应用提供了额外的灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3a2/6023835/604f4ec195b7/gr1.jpg

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