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Understanding the intracellular trafficking and intercellular transport of potexviruses in their host plants

机译:了解马铃薯痘苗病毒在其宿主植物中的细胞内运输和细胞间运输

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摘要

The movement of potexviruses through the cytoplasm to plasmodesmata (PD) and through PD to adjacent cells depends on the viral and host cellular proteins. Potexviruses encode three movement proteins [referred to as the triple gene block (TGB1–3)]. TGB1 protein moves cell-to-cell through PD and requires TGB2 and TGB3, which are endoplasmic reticulum (ER)-located proteins. TGB3 protein directs the movement of the ER-derived vesicles induced by TGB2 protein from the perinuclear ER to the cortical ER. TGB2 protein physically interacts with TGB3 protein in a membrane-associated form and also interacts with either coat protein (CP) or TGB1 protein at the ER network. Recent studies indicate that potexvirus movement involves the interaction between TGB proteins and CP with host proteins including membrane rafts. A group of host cellular membrane raft proteins, remorins, can serve as a counteracting membrane platform for viral ribonucleoprotein (RNP) docking and can thereby inhibit viral movement. The CP, which is a component of the RNP movement complex, is also critical for viral cell-to-cell movement through the PD. Interactions between TGB1 protein and/or the CP subunit with the 5′-terminus of genomic RNA [viral RNA (vRNA)] form RNP movement complexes and direct the movement of vRNAs through the PD. Recent studies show that tobacco proteins such as NbMPB2C or NbDnaJ-like proteins interact with the stem-loop 1 RNA located at the 5′-terminus of Potato virus X vRNA and regulate intracellular as well as intercellular movement. Although several host proteins that interact with vRNAs or viral proteins and that are crucial for vRNA transport have been screened and characterized, additional host proteins and details of viral movement remain to be characterized. In this review, we describe recent progress in understanding potexvirus movement within and between cells and how such movement is affected by interactions between vRNA/proteins and host proteins.
机译:Potexviruses病毒通过细胞质到达质膜(PD)并通过PD到达相邻细胞的运动取决于病毒和宿主细胞蛋白。痘病毒编码三种运动蛋白[称为三重基因块(TGB1-3)]。 TGB1蛋白通过PD在细胞之间移动,并需要TGB2和TGB3,它们是位于内质网(ER)的蛋白。 TGB3蛋白指导TGB2蛋白诱导的ER来源的囊泡从核周ER到皮质ER的运动。 TGB2蛋白以膜相关形式与TGB3蛋白发生物理相互作用,并在ER网络处与外壳蛋白(CP)或TGB1蛋白相互作用。最近的研究表明,potexvirus运动涉及TGB蛋白和CP与宿主蛋白(包括膜筏)之间的相互作用。一组宿主细胞膜筏蛋白,remorins,可以用作病毒核糖核蛋白(RNP)对接的抵消膜平台,从而抑制病毒运动。 CP是RNP运动复合体的组成部分,对于通过PD的病毒细胞间运动也至关重要。 TGB1蛋白和/或CP亚基与基因组RNA [病毒RNA(vRNA)]的5'末端之间的相互作用形成RNP运动复合物,并指导vRNA穿过PD的运动。最近的研究表明,烟草蛋白(例如NbMPB2C或NbDnaJ样蛋白)与位于马铃薯​​X病毒vRNA 5'末端的茎环1 RNA相互作用,并调节细胞内和细胞间的移动。尽管已经筛选和鉴定了几种与vRNA或病毒蛋白相互作用且对vRNA转运至关重要的宿主蛋白,但仍需鉴定其他宿主蛋白和病毒运动细节。在这篇综述中,我们描述了了解马铃薯中和细胞之间的马铃薯痘病毒运动以及vRNA /蛋白质与宿主蛋白质之间的相互作用如何影响这种运动的最新进展。

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