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需要的 RNA 序列和结构,以招募和激活登革热病毒聚合酶。

RNA sequences and structures required for the recruitment and activity of the dengue virus polymerase.

机构信息

Fundación Instituto Leloir-CONICET, Avenida Patricias Argentinas 435, Buenos Aires 1405, Argentina.

出版信息

J Biol Chem. 2011 Mar 4;286(9):6929-39. doi: 10.1074/jbc.M110.162289. Epub 2010 Dec 23.

Abstract

Dengue virus RNA-dependent RNA polymerase specifically binds to the viral genome by interacting with a promoter element known as stem-loop A (SLA). Although a great deal has been learned in recent years about the function of this promoter in dengue virus-infected cells, the molecular details that explain how the SLA interacts with the polymerase to promote viral RNA synthesis remain poorly understood. Using RNA binding and polymerase activity assays, we defined two elements of the SLA that are involved in polymerase interaction and RNA synthesis. Mutations at the top of the SLA resulted in RNAs that retained the ability to bind the polymerase but impaired promoter-dependent RNA synthesis. These results indicate that protein binding to the SLA is not sufficient to induce polymerase activity and that specific nucleotides of the SLA are necessary to render an active polymerase-promoter complex for RNA synthesis. We also report that protein binding to the viral RNA induces conformational changes downstream of the promoter element. Furthermore, we found that structured RNA elements at the 3' end of the template repress dengue virus polymerase activity in the context of a fully active SLA promoter. Using assays to evaluate initiation of RNA synthesis at the viral 3'-UTR, we found that the RNA-RNA interaction mediated by 5'-3'-hybridization was able to release the silencing effect of the 3'-stem-loop structure. We propose that the long range RNA-RNA interactions in the viral genome play multiple roles during RNA synthesis. Together, we provide new molecular details about the promoter-dependent dengue virus RNA polymerase activity.

摘要

登革热病毒 RNA 依赖性 RNA 聚合酶通过与一种称为茎环 A(SLA)的启动子元件相互作用,特异性地结合到病毒基因组上。尽管近年来在登革热病毒感染细胞中该启动子的功能方面已经有了很多了解,但仍不清楚 SLA 如何与聚合酶相互作用以促进病毒 RNA 合成的分子细节。我们使用 RNA 结合和聚合酶活性测定法,定义了 SLA 中参与聚合酶相互作用和 RNA 合成的两个元件。SLA 顶部的突变导致能够结合聚合酶但损害启动子依赖性 RNA 合成的 RNA。这些结果表明,蛋白质与 SLA 的结合不足以诱导聚合酶活性,并且 SLA 的特定核苷酸对于产生用于 RNA 合成的活性聚合酶-启动子复合物是必要的。我们还报告说,蛋白质与病毒 RNA 的结合诱导启动子元件下游的构象变化。此外,我们发现模板 3' 端的结构 RNA 元件在完全活跃的 SLA 启动子的情况下抑制登革热病毒聚合酶活性。通过评估在病毒 3'-UTR 处起始 RNA 合成的测定法,我们发现 5'-3'-杂交介导的 RNA-RNA 相互作用能够释放 3'-茎环结构的沉默效应。我们提出,病毒基因组中的长距离 RNA-RNA 相互作用在 RNA 合成过程中发挥多种作用。综上所述,我们提供了有关依赖启动子的登革热病毒 RNA 聚合酶活性的新分子细节。

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