Center for RNA Science and Therapeutics, USA.
Department of Pathology, School of Medicine, Case Western Reserve University, Cleveland, OH, USA.
J Mol Biol. 2020 Mar 27;432(7):2217-2231. doi: 10.1016/j.jmb.2020.02.005. Epub 2020 Feb 19.
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 β-hairpin (β-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 β-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.
DEAH/RHA 解旋酶 DHX36 与细胞 RNA 和 DNA 四链体结构以及富含 AU 的 RNA 元件有关。在体外,DHX36 重塑 DNA 和 RNA 四链体结构,并以 ATP 依赖的方式解开 DNA 双链。DHX36 包含超家族 2 解旋酶核心和几个辅助结构域,这些结构域在酶的同源物中保守。这些辅助结构域对 DHX36 酶活性的作用尚不清楚。在这里,我们结合结构和生化研究来定义与核酸相互作用的三个辅助结构域的功能。我们首先报告了与 ADP 结合的小鼠 DHX36 的晶体结构。该结构揭示了与先前报道的果蝇和牛 DHX36 结构相似的小鼠 DHX36 的总体结构。此外,我们的结构显示了伴随 ATP 结合和水解循环阶段的构象变化。然后,我们研究了小鼠 DHX36 中的 DHX36 特异性基序 (DSM)、OB 折叠和保守的 β-发夹 (β-HP) 在 RNA 结构重塑中的作用。我们证明并表征了 DHX36 对 RNA 双链的解旋,并研究了分子间和分子内 RNA 四链体结构的重塑。我们发现 DSM 不仅作为四链体结合适配器发挥作用,而且还促进 RNA 双链和四链体结构的重塑。OB 折叠和 β-HP 有助于 RNA 结合。这两个结构域对于重塑 RNA 四链体和双链结构也是必不可少的。我们的数据揭示了辅助结构域在核酸重塑反应的多个步骤中的作用。