Department of Biological Chemistry, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, 467-8603, Japan.
Department of Biological Chemistry, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, 467-8603, Japan.
Biochem Biophys Res Commun. 2024 Jul 30;719:150103. doi: 10.1016/j.bbrc.2024.150103. Epub 2024 May 11.
The RNA-binding protein PKR serves as a crucial antiviral innate immune factor that globally suppresses translation by sensing viral double-stranded RNA (dsRNA) and by phosphorylating the translation initiation factor eIF2α. Recent findings have unveiled that single-stranded RNAs (ssRNAs), including in vitro transcribed (IVT) mRNA, can also bind to and activate PKR. However, the precise mechanism underlying PKR activation by ssRNAs, remains incompletely understood. Here, we developed a NanoLuc Binary Technology (NanoBiT)-based in vitro PKR dimerization assay to assess the impact of ssRNAs on PKR dimerization. Our findings demonstrate that, akin to double-stranded polyinosinic:polycytidylic acid (polyIC), an encephalomyocarditis virus (EMCV) RNA, as well as NanoLuc luciferase (Nluc) mRNA, can induce PKR dimerization. Conversely, homopolymeric RNA lacking secondary structure fails to promote PKR dimerization, underscoring the significance of secondary structure in this process. Furthermore, adenovirus VA RNA 1, another ssRNA, impedes PKR dimerization by competing with Nluc mRNA. Additionally, we observed structured ssRNAs capable of forming G-quadruplexes induce PKR dimerization. Collectively, our results indicate that ssRNAs have the ability to either induce or inhibit PKR dimerization, thus representing potential targets for the development of antiviral and anti-inflammatory agents.
RNA 结合蛋白 PKR 作为一种重要的抗病毒先天免疫因子,通过感知病毒双链 RNA(dsRNA)和磷酸化翻译起始因子 eIF2α,全局抑制翻译。最近的发现揭示了单链 RNA(ssRNA),包括体外转录(IVT)mRNA,也可以与 PKR 结合并激活它。然而,ssRNA 激活 PKR 的精确机制仍不完全清楚。在这里,我们开发了一种基于 NanoLuc Binary Technology(NanoBiT)的体外 PKR 二聚化测定法来评估 ssRNA 对 PKR 二聚化的影响。我们的研究结果表明,类似于双链聚肌苷酸:聚胞苷酸(polyIC)、脑炎心肌炎病毒(EMCV)RNA 以及 NanoLuc 荧光素酶(Nluc)mRNA,可以诱导 PKR 二聚化。相反,没有二级结构的同聚 RNA 不能促进 PKR 二聚化,这突出了二级结构在这个过程中的重要性。此外,另一种 ssRNA——腺病毒 VA RNA 1 通过与 Nluc mRNA 竞争来抑制 PKR 二聚化。此外,我们观察到能够形成 G-四链体的结构 ssRNA 诱导 PKR 二聚化。总之,我们的结果表明,ssRNA 具有诱导或抑制 PKR 二聚化的能力,因此可能成为开发抗病毒和抗炎药物的潜在靶点。