Wellcome-Wolfson Institute for Experimental Medicine, Queen's University Belfast, Belfast BT9 7BL, UK.
Cells. 2021 May 7;10(5):1129. doi: 10.3390/cells10051129.
The field of mRNA modifications has been steadily growing in recent years as technologies have improved and the importance of these residues became clear. However, a subfield has also arisen, specifically focused on how these modifications affect viral RNA, with the possibility that viruses can also be used as a model to best determine the role that these modifications play on cellular mRNAs. First, virologists focused on the most abundant internal mRNA modification, mA, mapping this modification and elucidating its effects on the RNA of a wide range of RNA and DNA viruses. Next, less common RNA modifications including mC, Nm and acC were investigated and also found to be present on viral RNA. It now appears that viral RNA is littered with a multitude of RNA modifications. In biological systems that are under constant evolutionary pressure to out compete both the host as well as newly arising viral mutants, it poses an interesting question about what evolutionary benefit these modifications provide as it seems evident, at least to this author, that these modifications have been selected for. In this review, I discuss how RNA modifications are identified on viral RNA and the roles that have now been uncovered for these modifications in regard to viral replication. Finally, I propose some interesting avenues of research that may shed further light on the exact role that these modifications play in viral replication.
近年来,随着技术的进步和这些残基重要性的凸显,mRNA 修饰领域稳步发展。然而,一个子领域也应运而生,专门研究这些修饰如何影响病毒 RNA,有可能病毒也可以被用作模型,以最好地确定这些修饰对细胞 mRNA 的作用。首先,病毒学家专注于最丰富的内部 mRNA 修饰 mA,对这种修饰进行了映射,并阐明了其对广泛的 RNA 和 DNA 病毒 RNA 的影响。接下来,研究了较少见的 RNA 修饰,包括 mC、Nm 和 acC,也发现它们存在于病毒 RNA 上。现在似乎病毒 RNA 上布满了多种 RNA 修饰。在不断受到进化压力的生物系统中,这些压力需要与宿主以及新出现的病毒突变体竞争,这就提出了一个有趣的问题,即这些修饰提供了什么进化优势,因为至少在作者看来,这些修饰是被选择的。在这篇综述中,我讨论了如何在病毒 RNA 上鉴定 RNA 修饰,以及这些修饰在病毒复制方面所揭示的作用。最后,我提出了一些有趣的研究途径,这些途径可能会进一步阐明这些修饰在病毒复制中的确切作用。