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Function of Auxiliary Domains of the DEAH/RHA Helicase DHX36 in RNA Remodeling

机译:DEAH / RHA HelicaseDHX36在RNA重塑中的辅助结构域的功能

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The DEAH/RHA helicase DHX36 has been linked to cellular RNA and DNA quadruplex structures and to AU-rich RNA elements. In vitro, DHX36 remodels DNA and RNA quadruplex structures and unwinds DNA duplexes in an ATP-dependent manner. DHX36 contains the superfamily 2 helicase core and several auxiliary domains that are conserved in orthologs of the enzyme. The role of these auxiliary domains for the enzymatic function of DHX36 is not well understood. Here, we combine structural and biochemical studies to define the function of three auxiliary domains that contact nucleic acid. We first report the crystal structure of mouse DHX36 bound to ADP. The structure reveals an overall architecture of mouse DHX36 that is similar to previously reported architectures of fly and bovine DHX36. In addition, our structure shows conformational changes that accompany stages of the ATP-binding and hydrolysis cycle. We then examine the roles of the DHX36-specific motif (DSM), the OB-fold, and a conserved beta-hairpin (beta-HP) in mouse DHX36 in the remodeling of RNA structures. We demonstrate and characterize RNA duplex unwinding for DHX36 and examine the remodeling of inter- and intramolecular RNA quadruplex structures. We find that the DSM not only functions as a quadruplex binding adaptor but also promotes the remodeling of RNA duplex and quadruplex structures. The OB-fold and the beta-HP contribute to RNA binding. Both domains are also essential for remodeling RNA quadruplex and duplex structures. Our data reveal roles of auxiliary domains for multiple steps of the nucleic acid remodeling reactions. (C) 2020 Elsevier Ltd. All rights reserved.
机译:DEAH / RHA HelicaseDHX36已与细胞RNA和DNA Quadruple结构和富含Au的RNA元素相关联。体外,DHX36重新统计DNA和RNA四驱结构,并以ATP依赖性方式展开DNA双工。 DHX36含有Superfamily 2 Helicase核心和几个在酶的直脑中保守的辅助域。这些辅助结构域对DHX36的酶促功能的作用尚不清楚。在这里,我们结合了结构和生化研究来确定接触核酸的三个辅助结构域的功能。我们首先报告鼠标DHX36绑定到ADP的晶体结构。该结构揭示了鼠标DHX36的整体架构,类似于先前报告的飞行和牛DHX36的架构。此外,我们的结构表明了ATP结合和水解循环的阶段伴随的构象变化。然后,在RNA结构的重塑中检查DHX36特异性主题(DSM),OB折叠和保守β-发夹(BETA-HP)的作用。我们证明并表征了RNA双工展开DHX36,并检查细胞和分子内RNA四边形结构的重塑。我们发现DSM不仅用作四边形绑定适配器,而且还促进RNA双工和四边形结构的重塑。 ob-fold和β-hp有助于RNA结合。两个域对重塑RNA四边形和双工结构也是必不可少的。我们的数据揭示辅助结构域的作用,用于核酸重塑反应的多个步骤。 (c)2020 elestvier有限公司保留所有权利。

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