Mathioudakis Matthaios M, Rodríguez-Moreno Luis, Sempere Raquel Navarro, Aranda Miguel A, Livieratos Ioannis
Mol Plant Microbe Interact. 2014 Dec;27(12):1356-69. doi: 10.1094/MPMI-07-14-0195-R.
Pepino mosaic virus (PepMV) (family Alphaflexiviridae, genus Potexvirus) is a mechanically transmitted tomato pathogen that, over the last decade, has evolved from emerging to endemic worldwide. Here, two heat-shock cognate (Hsc70) isoforms were identified as part of the coat protein (CP)/Hsc70 complex in vivo, following full-length PepMV and CP agroinoculation. PepMV accumulation was severely reduced in Hsp70 virus-induced gene silenced and in quercetin-treated Nicotiana benthamiana plants. Similarly, in vitro-transcribed as well as virion RNA input levels were reduced in quercetin-treated protoplasts, suggesting an essential role for Hsp70 in PepMV replication. As for Potato virus X, the PepMV CP and triple gene-block protein 1 (TGBp1) self-associate and interact with each other in vitro but, unlike in the prototype, both PepMV proteins represent suppressors of transgene-induced RNA silencing with different modes of action; CP is a more efficient suppressor of RNA silencing, sequesters the silencing signal by preventing its spread to neighboring cells and its systemic movement. Here, we provide evidence for additional roles of the PepMV CP and host-encoded Hsp70 in viral infection, the first as a truly multifunctional protein able to specifically bind to a host chaperone and to counterattack an RNA-based defense mechanism, and the latter as an essential factor for PepMV infection.
番木瓜斑驳病毒(PepMV)(套式病毒科马铃薯X病毒属)是一种通过机械传播的番茄病原体,在过去十年中,已从在全球范围内新出现的病原体演变为地方性病原体。在这里,在全长PepMV和衣壳蛋白(CP)农杆菌接种后,两种热休克同源(Hsc70)异构体被鉴定为体内衣壳蛋白(CP)/Hsc70复合物的一部分。在热休克蛋白70(Hsp70)病毒诱导的基因沉默以及用槲皮素处理的本氏烟草植株中,PepMV积累量大幅降低。同样,在经槲皮素处理的原生质体中,体外转录的以及病毒粒子RNA输入水平降低,这表明Hsp70在PepMV复制中起重要作用。至于马铃薯X病毒,PepMV衣壳蛋白和三基因块蛋白1(TGBp1)在体外相互自缔合并相互作用,但与原型病毒不同的是,这两种PepMV蛋白均代表具有不同作用模式的转基因诱导的RNA沉默抑制因子;衣壳蛋白是一种更有效的RNA沉默抑制因子,通过阻止沉默信号扩散到邻近细胞及其系统移动来隔离沉默信号。在这里,我们提供了PepMV衣壳蛋白和宿主编码的Hsp70在病毒感染中的其他作用的证据,前者是一种真正的多功能蛋白,能够特异性结合宿主伴侣蛋白并反击基于RNA的防御机制,后者是PepMV感染的必需因子。