Department of Biology, York University, Toronto, ON M3J 1P3, Canada.
Viruses. 2023 Mar 10;15(3):722. doi: 10.3390/v15030722.
Red clover necrotic mosaic virus (RCNMV) is a segmented positive-strand RNA virus consisting of RNA1 and RNA2. Previous studies demonstrated that efficient translation of RCNMV RNA2 requires de novo synthesis of RNA2 during infections, suggesting that RNA2 replication is required for its translation. We explored a potential mechanism underlying the regulation of replication-associated translation of RNA2 by examining RNA elements in its 5' untranslated region (5'UTR). Structural analysis of the 5'UTR suggested that it can form two mutually exclusive configurations: a more thermodynamically stable conformation, termed the 5'-basal stem structure (5'BS), in which 5'-terminal sequences are base paired, and an alternative conformation, where the 5'-end segment is single stranded. Functional mutational analysis of the 5'UTR structure indicated that (i) 43S ribosomal subunits enter at the very 5'-end of RNA2; (ii) the alternative conformation, containing unpaired 5'-terminal nucleotides, mediates efficient translation; (iii) the 5'BS conformation, with a paired 5'-end segment, supresses translation; and (iv) the 5'BS conformation confers stability to RNA2 from 5'-to-3' exoribonuclease Xrn1. Based on our results, we suggest that during infections, newly synthesized RNA2s transiently adopt the alternative conformation to allow for efficient translation, then refold into the 5'BS conformation, which supresses translation and promotes efficient RNA2 replication. The potential advantages of this proposed 5'UTR-based regulatory mechanism for coordinating RNA2 translation and replication are discussed.
红车轴草坏死环斑病毒(RCNMV)是一种分段的正链 RNA 病毒,由 RNA1 和 RNA2 组成。先前的研究表明,RCNMV RNA2 的有效翻译需要在感染过程中从头合成 RNA2,这表明 RNA2 复制是其翻译所必需的。我们通过检查其 5'非翻译区(5'UTR)中的 RNA 元件,探索了调节 RNA2 复制相关翻译的潜在机制。5'UTR 的结构分析表明,它可以形成两种相互排斥的构象:一种热力学上更稳定的构象,称为 5'-基础茎结构(5'BS),其中 5'-末端序列碱基配对,另一种构象,其中 5'-末端片段为单链。5'UTR 结构的功能突变分析表明:(i)43S 核糖体亚基从 RNA2 的非常 5'-末端进入;(ii)包含未配对 5'-末端核苷酸的替代构象介导有效的翻译;(iii)5'BS 构象,带有配对的 5'-末端片段,抑制翻译;(iv)5'BS 构象赋予 RNA2 从 5'-到-3'外切核酸酶 Xrn1 的稳定性。基于我们的结果,我们提出在感染过程中,新合成的 RNA2 会暂时采用替代构象以实现有效的翻译,然后重新折叠成 5'BS 构象,从而抑制翻译并促进有效的 RNA2 复制。讨论了这种基于 5'UTR 的调节机制在协调 RNA2 翻译和复制方面的潜在优势。