MRC-University of Glasgow Centre for Virus Research, 464 Bearsden Road, Glasgow G611QH, Scotland, UK.
Molecular Systems Biology Unit, European Molecular Biology Laboratory (EMBL) Heidelberg, 69117 Heidelberg, Germany.
Mol Cell. 2024 Oct 3;84(19):3706-3721. doi: 10.1016/j.molcel.2024.08.027.
RNA is a central molecule in RNA virus biology; however, the interactions that it establishes with the host cell are only starting to be elucidated. In recent years, a methodology revolution has dramatically expanded the scope of host-virus interactions involving the viral RNA (vRNA). A second wave of method development has enabled the precise study of these protein-vRNA interactions in a life cycle stage-dependent manner, as well as providing insights into the interactome of specific vRNA species. This review discusses these technical advances and describes the new regulatory mechanisms that have been identified through their use. Among these, we discuss the importance of vRNA in regulating protein function through a process known as riboregulation. We envision that the elucidation of vRNA interactomes will open new avenues of research, including pathways to the discovery of host factors with therapeutic potential against viruses.
RNA 是 RNA 病毒生物学中的核心分子;然而,它与宿主细胞建立的相互作用才刚刚开始被阐明。近年来,一种方法学的革命极大地扩展了涉及病毒 RNA(vRNA)的宿主-病毒相互作用的范围。第二次方法发展浪潮使得能够以依赖于生命周期阶段的方式精确研究这些蛋白-vRNA 相互作用,以及深入了解特定 vRNA 物种的相互作用组。本文综述了这些技术进步,并描述了通过这些技术发现的新的调控机制。其中,我们讨论了 vRNA 通过一种称为核糖调控的过程调节蛋白功能的重要性。我们设想,阐明 vRNA 相互作用组将开辟新的研究途径,包括发现具有抗病毒治疗潜力的宿主因子的途径。