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A cytorhabdovirus phosphoprotein forms mobile inclusions trafficked on the actin/ER network for viral RNA synthesis

机译:纤溶病毒磷蛋白形成在肌动蛋白/ ER网络上运输的包裹体用于病毒RNA合成

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摘要

As obligate parasites, plant viruses usually hijack host cytoskeletons for replication and movement. Rhabdoviruses are enveloped, negative-stranded RNA viruses that infect vertebrates, invertebrates, and plants, but the mechanisms of intracellular trafficking of plant rhabdovirus proteins are largely unknown. Here, we used Barley yellow striate mosaic virus (BYSMV), a plant cytorhabdovirus, as a model to investigate the effects of the actin cytoskeleton on viral intracellular movement and viral RNA synthesis in a mini-replicon (MR) system. The BYSMV P protein forms mobile inclusion bodies that are trafficked along the actin/endoplasmic reticulum network, and recruit the N and L proteins into viroplasm-like structures. Deletion analysis showed that the N terminal region (aa 43–55) and the remaining region (aa 56–295) of BYSMV P are essential for the mobility and formation of inclusions, respectively. Overexpression of myosin XI-K tails completely abolishes the trafficking activity of P bodies, and is accompanied by a significant reduction of viral MR RNA synthesis. These results suggest that BYSMV P contributes to the formation and trafficking of viroplasm-like structures along the ER/actin network driven by myosin XI-K. Thus, rhabdovirus P appears to be a dynamic hub protein for efficient recruitment of viral proteins, thereby promoting viral RNA synthesis.
机译:作为专性寄生虫,植物病毒通常劫持宿主细胞骨架进行复制和移动。弹状病毒是感染脊椎动物,无脊椎动物和植物的有包膜的负链RNA病毒,但是植物弹状病毒蛋白在细胞内运输的机制尚不清楚。在这里,我们使用大麦黄条纹花叶病毒(BYSMV),一种植物细胞病毒,作为模型来研究肌动蛋白细胞骨架对微型复制子(MR)系统中病毒胞内运动和病毒RNA合成的影响。 BYSMV P蛋白形成沿肌动蛋白/内质网网络运输的移动包涵体,并将N和L蛋白募集到病毒样结构中。缺失分析表明,BYSMV P的N末端区域(aa 43-55)和其余区域(aa 56-295)分别对夹杂物的迁移和形成至关重要。肌球蛋白XI-K尾巴的过度表达完全消除了P体的运输活性,并伴随着病毒MR RNA合成的显着减少。这些结果表明,BYSMV P有助于沿着由肌球蛋白XI-K驱动的ER /肌动蛋白网络形成和转移病毒质样结构。因此,弹状病毒P似乎是有效募集病毒蛋白的动态中枢蛋白,从而促进了病毒RNA的合成。

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