Department of Biochemistry, University of Utah, Salt Lake City, Utah 84112, USA.
Université de Strasbourg, CNRS UPR9022, Institut de Biologie Moléculaire et Cellulaire, 67084 Strasbourg, France.
RNA. 2020 Dec;26(12):1847-1861. doi: 10.1261/rna.077289.120. Epub 2020 Aug 25.
In vitro, Dicer-2 (Dcr-2) uses its helicase domain to initiate processing of dsRNA with blunt (BLT) termini, and its Platform•PAZ domain to initiate processing of dsRNA with 3' overhangs (ovrs). To understand the relationship of these in vitro observations to roles of Dcr-2 in vivo, we compared in vitro effects of two helicase mutations to their impact on production of endogenous and viral siRNAs in flies. Consistent with the importance of the helicase domain in processing BLT dsRNA, both point mutations eliminated processing of BLT, but not 3'ovr, dsRNA in vitro. However, the mutations had different effects in vivo. A point mutation in the Walker A motif of the Hel1 subdomain, G31R, largely eliminated production of siRNAs in vivo, while F225G, located in the Hel2 subdomain, showed reduced levels of endogenous siRNAs, but did not significantly affect virus-derived siRNAs. In vitro assays monitoring dsRNA cleavage, dsRNA binding, ATP hydrolysis, and binding of the accessory factor Loquacious-PD provided insight into the different effects of the mutations on processing of different sources of dsRNA in flies. Our in vitro studies suggest effects of the mutations in vivo relate to their effects on ATPase activity, dsRNA binding, and interactions with Loquacious-PD. Our studies emphasize the importance of future studies to characterize dsRNA termini as they exist in and other animals.
在体外,Dicer-2 (Dcr-2) 使用其解旋酶结构域起始具有平头末端 (BLT) 的 dsRNA 的加工,使用其 Platform•PAZ 结构域起始具有 3'突出 (ovrs) 的 dsRNA 的加工。为了了解这些体外观察结果与 Dcr-2 在体内的作用之间的关系,我们比较了两种解旋酶突变在体外对产生内源性和病毒 siRNA 的影响。与解旋酶结构域在加工 BLT dsRNA 中的重要性一致,这两种点突变消除了 BLT 的加工,但不影响体外 3'ovr dsRNA 的加工。然而,这些突变在体内具有不同的影响。Hel1 亚结构域 Walker A 基序中的点突变 G31R ,在体内极大地消除了 siRNA 的产生,而位于 Hel2 亚结构域的 F225G 显示出内源性 siRNA 水平降低,但对病毒衍生的 siRNA 没有显著影响。体外测定法监测 dsRNA 切割、dsRNA 结合、ATP 水解以及辅助因子 Loquacious-PD 的结合,深入了解了突变对果蝇中不同来源 dsRNA 加工的不同影响。我们的体外研究表明,突变在体内的影响与其对 ATP 酶活性、dsRNA 结合以及与 Loquacious-PD 的相互作用的影响有关。我们的研究强调了未来研究的重要性,需要对 dsRNA 末端进行特征化,因为它们存在于 和其他动物中。