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Analysis of natural variants of the hepatitis C virus internal ribosome entry site reveals that primary sequence plays a key role in cap-independent translation

机译:丙型肝炎病毒内部核糖体进入位点的天然变异的分析表明一级序列在不依赖于帽的翻译中起关键作用

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摘要

The HCV internal ribosome entry site (IRES) spans a region of ∼340 nt that encompasses most of the 5′ untranslated region (5′UTR) of the viral mRNA and the first 24–40 nt of the core-coding region. To investigate the implication of altering the primary sequence of the 5′UTR on IRES activity, naturally occurring variants of the 5′UTR were isolated from clinical samples and analyzed. The impact of the identified mutations on translation was evaluated in the context of RLuc/FLuc bicistronic RNAs. Results show that depending on their location within the RNA structure, these naturally occurring mutations cause a range of effects on IRES activity. However, mutations within subdomain IIId hinder HCV IRES-mediated translation. In an attempt to explain these data, the dynamic behavior of the subdomain IIId was analyzed by means of molecular dynamics (MD) simulations. Despite the loss of function, MD simulations predicted that mutant G266A/G268U possesses a structure similar to the wt-RNA. This prediction was validated by analyzing the secondary structure of the isolated IIId RNAs by circular dichroism spectroscopy in the presence or absence of Mg2+ ions. These data strongly suggest that the primary sequence of subdomain IIId plays a key role in HCV IRES-mediated translation.
机译:HCV内部核糖体进入位点(IRES)跨度约为340 nt,包括病毒mRNA的大部分5'非翻译区(5'UTR)和核心编码区的前24-40 nt。为了研究改变5'UTR的一级序列对IRES活性的影响,从临床样本中分离出5'UTR的天然变异体并进行了分析。在RLuc / FLuc双顺反子RNA的背景下评估了鉴定出的突变对翻译的影响。结果表明,取决于它们在RNA结构中的位置,这些天然存在的突变会对IRES活性产生一系列影响。但是,亚域IIId内的突变会阻碍HCV IRES介导的翻译。为了解释这些数据,通过分子动力学(MD)模拟分析了子域IIId的动力学行为。尽管功能丧失,MD模拟预测突变体G266A / G268U具有类似于wt-RNA的结构。在存在或不存在Mg 2 + 离子的情况下,通过圆二色光谱分析分离的IIId RNA的二级结构,验证了这一预测。这些数据强烈暗示亚结构域IIId的初级序列在HCV IRES介导的翻译中起关键作用。

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