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Nanoscale Structure Determination of Murray Valley Encephalitis and Powassan Virus Non-Coding RNAs

机译:墨累谷脑炎和Powassan病毒非编码RNA的纳米结构测定。

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摘要

Viral infections are responsible for numerous deaths worldwide. Flaviviruses, which contain RNA as their genetic material, are one of the most pathogenic families of viruses. There is an increasing amount of evidence suggesting that their 5’ and 3’ non-coding terminal regions are critical for their survival. Information on their structural features is essential to gain detailed insights into their functions and interactions with host proteins. In this study, the 5’ and 3’ terminal regions of Murray Valley encephalitis virus and Powassan virus were examined using biophysical and computational modeling methods. First, we used size exclusion chromatography and analytical ultracentrifuge methods to investigate the purity of transcribed RNAs. Next, we employed small-angle X-ray scattering techniques to study solution conformation and low-resolution structures of these RNAs, which suggest that the 3’ terminal regions are highly extended as compared to the 5’ terminal regions for both viruses. Using computational modeling tools, we reconstructed 3-dimensional structures of each RNA fragment and compared them with derived small-angle X-ray scattering low-resolution structures. This approach allowed us to reinforce that the 5’ terminal regions adopt more dynamic structures compared to the mainly double-stranded structures of the 3’ terminal regions.
机译:病毒感染是导致全球众多死亡的原因。包含RNA作为其遗传物质的黄病毒是最致病的病毒家族之一。越来越多的证据表明,它们的5'和3'非编码末端区域对其生存至关重要。有关其结构特征的信息对于深入了解其功能以及与宿主蛋白的相互作用至关重要。在这项研究中,使用生物物理和计算机模拟方法检查了墨累谷脑炎病毒和Powassan病毒的5'和3'末端区域。首先,我们使用尺寸排阻色谱法和分析超速离心方法来研究转录的RNA的纯度。接下来,我们采用小角度X射线散射技术研究了这些RNA的溶液构象和低分辨率结构,这表明与两种病毒的5'末端区域相比,其3'末端区域都高度延伸。使用计算建模工具,我们重建了每个RNA片段的3维结构,并将它们与导出的小角度X射线散射低分辨率结构进行了比较。与3'末端区域的主要双链结构相比,这种方法使我们能够强调5'末端区域采用的动态结构更多。

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