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Five Proteins of Laodelphax striatellus Are Potentially Involved in the Interactions between Rice Stripe Virus and Vector

机译:Laodelphax striatellus的五种蛋白质可能参与了水稻条纹病毒与载体之间的相互作用

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摘要

Rice stripe virus (RSV) is the type member of the genus Tenuivirus, which relies on the small brown planthopper (Laodelphax striatellus Fallén) for its transmission in a persistent, circulative-propagative manner. To be transmitted, virus must cross the midgut and salivary glands epithelial barriers in a transcytosis mechanism where vector receptors interact with virions, and as propagative virus, RSV need utilize host components to complete viral propagation in vector cells. At present, these mechanisms remain unknown. In this paper, we screened L. striatellus proteins, separated by two-dimensional electrophoresis (2-DE), as potential RSV binding molecules using a virus overlay assay of protein blots. The results, five L. striatellus proteins that bound to purified RSV particles in vitro were resolved and identified using mass spectrometry. The virus-binding capacities of five proteins were further elucidated in yeast two-hybrid screen (YTHS) and virus-binding experiments of expressed proteins. Among five proteins, the receptor for activated protein kinase C (RACK) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH3) did not interact with RSV nucleocapsid protein (NCP) in YTHS and in far-Western blot, and three ribosomal proteins (RPL5, RPL7a and RPL8) had specific interactions with RSV. In dot immunobinding assay (DIBA), all five proteins were able to bind to RSV particles. The five proteins' potential contributions to the interactions between RSV and L. striatellus were discussed. We proposed that RACK and GAPDH3 might be involved in the epithelial transcytosis of virus particles, and three ribosomal proteins probably played potential crucial roles in the infection and propagation of RSV in vector cells.
机译:水稻条纹病毒(RSV)是Tenuivirus属的类型成员,它依靠小的褐飞虱(Laodelphax striatellusFallén)以持续的,循环传播的方式传播。要进行传播,病毒必须以转胞吞作用机制穿过中肠和唾液腺上皮屏障,在这种机制中,载体受体与病毒体相互作用,而作为繁殖病毒,RSV需要利用宿主成分来完成病毒在载体细胞中的繁殖。目前,这些机制仍然未知。在本文中,我们使用病毒印迹蛋白印迹法筛选了被二维电泳(2-DE)分离的L. striatellus蛋白作为潜在的RSV结合分子。结果,使用质谱法解析和鉴定了五种与体外纯化的RSV颗粒结合的条纹状乳杆菌蛋白。在酵母双杂交筛选(YTHS)和表达蛋白的病毒结合实验中进一步阐明了5种蛋白的病毒结合能力。在5种蛋白质中,活化蛋白质激酶C(RACK)和3磷酸甘油醛脱氢酶(GAPDH3)的受体在YTHS和远西印迹中均不与RSV核衣壳蛋白(NCP)相互作用,而在3种核糖体蛋白(RPL5, RPL7a和RPL8)与RSV有特定的相互作用。在点免疫结合测定(DIBA)中,所有五个蛋白都能够结合到RSV颗粒。讨论了这五种蛋白质对RSV和L. striatellus相互作用的潜在作用。我们提出RACK和GAPDH3可能参与病毒颗粒的上皮细胞转胞作用,并且三种核糖体蛋白可能在RSV在载体细胞的感染和繁殖中起着潜在的关键作用。

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