Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, 61-704, Poznan, Poland.
Institute of Human Genetics, Polish Academy of Sciences, Strzeszynska 32, 60-479, Poznan, Poland.
Cell Mol Life Sci. 2023 May 2;80(5):136. doi: 10.1007/s00018-023-04764-1.
Influenza A virus (IAV) is a respiratory virus that causes epidemics and pandemics. Knowledge of IAV RNA secondary structure in vivo is crucial for a better understanding of virus biology. Moreover, it is a fundament for the development of new RNA-targeting antivirals. Chemical RNA mapping using selective 2'-hydroxyl acylation analyzed by primer extension (SHAPE) coupled with Mutational Profiling (MaP) allows for the thorough examination of secondary structures in low-abundance RNAs in their biological context. So far, the method has been used for analyzing the RNA secondary structures of several viruses including SARS-CoV-2 in virio and in cellulo. Here, we used SHAPE-MaP and dimethyl sulfate mutational profiling with sequencing (DMS-MaPseq) for genome-wide secondary structure analysis of viral RNA (vRNA) of the pandemic influenza A/California/04/2009 (H1N1) strain in both in virio and in cellulo environments. Experimental data allowed the prediction of the secondary structures of all eight vRNA segments in virio and, for the first time, the structures of vRNA5, 7, and 8 in cellulo. We conducted a comprehensive structural analysis of the proposed vRNA structures to reveal the motifs predicted with the highest accuracy. We also performed a base-pairs conservation analysis of the predicted vRNA structures and revealed many highly conserved vRNA motifs among the IAVs. The structural motifs presented herein are potential candidates for new IAV antiviral strategies.
甲型流感病毒(IAV)是一种呼吸道病毒,可引发流行和大流行。了解体内 IAV RNA 二级结构对于更好地了解病毒生物学至关重要。此外,它也是开发新的 RNA 靶向抗病毒药物的基础。使用选择性 2'-羟基酰化分析的化学 RNA 作图(SHAPE)与突变分析(MaP)相结合,可在其生物学背景下全面检查低丰度 RNA 的二级结构。迄今为止,该方法已用于分析包括 SARS-CoV-2 在内的几种病毒的 RNA 二级结构,包括在体内和细胞内。在这里,我们使用 SHAPE-MaP 和带有测序的二甲磺酸突变分析(DMS-MaPseq)在体内和细胞内环境中对大流行性甲型流感病毒/加利福尼亚/04/2009(H1N1)株的所有 8 个 vRNA 片段进行了全基因组二级结构分析。实验数据允许预测 vRNA 在体内的二级结构,并且首次预测了 vRNA5、7 和 8 在细胞内的结构。我们对所提出的 vRNA 结构进行了全面的结构分析,以揭示具有最高准确性的预测基序。我们还对预测的 vRNA 结构进行了碱基对保守性分析,并揭示了 IAV 之间许多高度保守的 vRNA 基序。本文介绍的结构基序是新的 IAV 抗病毒策略的潜在候选者。