西尼罗病毒基因组RNA的3'UTR是一个潜在的抗病毒靶点

S. Ramos-Lorente, Isabel Pérez-Jover, C. Romero-Lopez, A. Berzal-Herranz
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引用次数: 0

摘要

蛋白质编码信息只代表了生物体遗传负荷的一小部分。基本信息编码功能rna,称为非编码rna (ncRNAs),在细胞生命的基本生物学过程中起着关键作用。许多mrna除了被翻译成蛋白质外,还充当真正的ncrna。因此,对抗疾病的潜在药物靶点不仅仅是蛋白质。病毒RNA基因组编码完成感染周期的所有信息。它们是多功能分子,充当复制模板和mrna。此外,病毒RNA基因组中定义的结构域对病毒周期的完成和基本过程的调节起着关键作用;这些结构域也与毒力有关。西尼罗病毒(WNV)基因组由单链RNA分子组成,其中包含单个ORF,两侧为非翻译区(UTRs)。3'UTR是有效翻译所必需的,但涉及这种调节的机制仍然不清楚。在这项工作中,我们展示了WNV-3'UTR特异性募集40S核糖体亚基的证据。我们定位了两个潜在的40S结合位点。40S的结合引起WNV-3'UTR内高度保守结构域的构象变化。功能分析支持这样的假设,即3'UTR招募40S粒子是有效翻译所必需的。通过靶向WNV-3'UTR结合位点干扰40S的募集,通过开发新的治疗性化合物构成了一种潜在的抗病毒策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The 3’UTR of the West Nile Virus genomic RNA is a potential antiviral target site
The protein coding-information only represents a small portion of the genetic load of a living organism. It is well established that essential information codes functional RNAs, called non-coding RNAs (ncRNAs), which play key roles in the essential biological processes of the cell life. Many mRNAs also act as truly ncRNAs besides being translated into proteins. Therefore, the repertoire of potential drug targets to fight diseases goes beyond proteins. Viral RNA genomes encode all the information for completion of the infectious cycle. They are multifunctional molecules, which act as replication templates and mRNAs. Further, defined structural domains in viral RNA genomes play key functions for the completion of the viral cycle and the regulation of the essential processes; these domains have also been involved in virulence. The West Nile Virus (WNV) genome consists in a single stranded RNA molecule, which contains a single ORF flanked by untranslated regions (UTRs). The 3’UTR is required for efficient translation, but the mechanisms involved in this regulation are still obscure. In this work, we show evidences that the WNV-3’UTR specifically recruits the 40S ribosomal subunit. We have localized two potential binding sites of the 40S. Binding of the 40S induced conformational changes in highly conserved structural domains within the WNV-3’UTR. Functional assays support the hypothesis that recruitment of the 40S particle by the 3’UTR is required for an efficient translation. Interfering with the 40S recruitment, by targeting the WNV-3’UTR binding sites, constitutes a potential antiviral strategy by the development of new therapeutic compounds.
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