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In vitro translation of virally-encoded replication polyproteins to recapitulate polyprotein maturation processes

机译:体外翻译病毒编码的复制多蛋白,以重新携带多蛋白成熟过程

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Single-stranded, positive-sense RNA viruses encode essential replication polyproteins which are composed of several domains. They are usually subjected to finely regulated proteolytic maturation processes to generate cleavage intermediates and end-products. Both polyproteins and maturation products play multiple key roles that ultimately allow synthesis of viral genome progeny. Despite the importance of these proteins in the course of viral replication, their structural properties, including the conformational changes regulating their numerous functions, are poorly described at the structural level. This lack of information is mainly due to the extreme difficulty to express large, membrane-bound, multi-domain proteins with criteria suitable for structural biology methods. To tackle this challenge, we have used a wheat-germ cell-free expression system. We firstly establish that this approach allows to synthesize viral polyproteins encoded by two unrelated positive-sense RNA viruses, a human norovirus and a plant tymovirus. Then, we demonstrate that these polyproteins are fully functional and are spontaneously auto-cleaved by their active protease domain, giving rise to natural maturation products. Moreover, we show that introduction of point mutations in polyproteins allows to inhibit the proteolytic maturation process of each virus. This allowed us to express and partially purify the uncleaved full-length norovirus polyprotein and the tymoviral RNA-dependent RNA polymerase. Thus, this study provides a powerful tool to obtain soluble viral polyproteins and their maturation products in order to conduct challenging structural biology projects and therefore solve unanswered questions.
机译:单链正义RNA病毒编码由多个结构域组成的基本复制多蛋白。它们通常经历精细调节的蛋白水解成熟过程,以产生裂解中间产物和终产物。多蛋白和成熟产物都发挥着多重关键作用,最终允许病毒基因组子代的合成。尽管这些蛋白质在病毒复制过程中很重要,但它们的结构特性,包括调节其众多功能的构象变化,在结构水平上的描述却很差。这种缺乏信息的主要原因是,用适合结构生物学方法的标准表达大的、膜结合的、多结构域的蛋白质非常困难。为了应对这一挑战,我们使用了小麦胚芽无细胞表达系统。我们首先确定,这种方法可以合成由两种不相关的正义RNA病毒编码的病毒多蛋白,一种人类诺如病毒和一种植物鼓膜病毒。然后,我们证明了这些多蛋白是完全功能的,并被其活性蛋白酶结构域自动切割,产生自然成熟产物。此外,我们还表明,在多蛋白中引入点突变可以抑制每种病毒的蛋白水解成熟过程。这使我们能够表达并部分纯化未清除的全长诺沃克病毒多蛋白和鼓膜病毒RNA依赖性RNA聚合酶。因此,本研究为获得可溶性病毒多蛋白及其成熟产物提供了强有力的工具,以便开展具有挑战性的结构生物学项目,从而解决尚未解决的问题。

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