Institute of Bioorganic Chemistry, Polish Academy of Sciences, Poznan, Poland.
Roy J. Carver Department of Biophysics, Biochemistry and Molecular Biology, Iowa State University, Ames, Iowa, USA.
J Biol Chem. 2021 Dec;297(6):101245. doi: 10.1016/j.jbc.2021.101245. Epub 2021 Oct 22.
RNA structure in the influenza A virus (IAV) has been the focus of several studies that have shown connections between conserved secondary structure motifs and their biological function in the virus replication cycle. Questions have arisen on how to best recognize and understand the pandemic properties of IAV strains from an RNA perspective, but determination of the RNA secondary structure has been challenging. Herein, we used chemical mapping to determine the secondary structure of segment 8 viral RNA (vRNA) of the pandemic A/California/04/2009 (H1N1) strain of IAV. Additionally, this long, naturally occurring RNA served as a model to evaluate RNA mapping with 4-thiouridine (4sU) crosslinking. We explored 4-thiouridine as a probe of nucleotides in close proximity, through its incorporation into newly transcribed RNA and subsequent photoactivation. RNA secondary structural features both universal to type A strains and unique to the A/California/04/2009 (H1N1) strain were recognized. 4sU mapping confirmed and facilitated RNA structure prediction, according to several rules: 4sU photocross-linking forms efficiently in the double-stranded region of RNA with some flexibility, in the ends of helices, and across bulges and loops when their structural mobility is permitted. This method highlighted three-dimensional properties of segment 8 vRNA secondary structure motifs and allowed to propose several long-range three-dimensional interactions. 4sU mapping combined with chemical mapping and bioinformatic analysis could be used to enhance the RNA structure determination as well as recognition of target regions for antisense strategies or viral RNA detection.
流感病毒(IAV)的 RNA 结构一直是多项研究的重点,这些研究表明保守的二级结构基序与其在病毒复制周期中的生物学功能之间存在联系。人们提出了一些问题,即如何从 RNA 角度最好地识别和理解 IAV 株的大流行特性,但确定 RNA 二级结构一直具有挑战性。在此,我们使用化学作图法来确定大流行的 A/加利福尼亚/04/2009(H1N1)IAV 株的 8 节段病毒 RNA(vRNA)的二级结构。此外,这种长的、天然存在的 RNA 可用作模型,用于评估带有 4-硫代尿嘧啶(4sU)交联的 RNA 作图。我们探索了 4sU 作为近邻核苷酸的探针,通过将其掺入新转录的 RNA 中并随后进行光活化。我们识别到了普遍存在于 A 型株中的二级结构特征以及 A/加利福尼亚/04/2009(H1N1)株所特有的二级结构特征。4sU 作图根据以下几个规则确认并促进了 RNA 结构预测:4sU 光交联在 RNA 的双链区形成,其具有一定的灵活性,在螺旋的末端以及在允许其结构运动时穿过凸起和环。该方法突出了 8 节段 vRNA 二级结构基序的三维性质,并允许提出几个长程三维相互作用。4sU 作图结合化学作图和生物信息学分析,可用于增强 RNA 结构的确定以及识别反义策略的靶区或病毒 RNA 的检测。