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烟草花叶病毒运动蛋白可弥补在韧皮部进入方面有缺陷但不能进入韧皮部的马铃薯纺锤块茎类病毒 RNA 突变体的功能。

Tobacco mosaic virus movement protein complements a Potato spindle tuber viroid RNA mutant impaired for mesophyll entry but not mutants unable to enter the phloem.

机构信息

Department of Molecular Genetics, Center for Applied Plant Sciences, Center for RNA Biology, and Infectious Diseases Institute, The Ohio State University, Columbus, Ohio, United States of America.

State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Institute of Plant Virology, Ningbo University, Ningbo, China.

出版信息

PLoS Pathog. 2022 Dec 27;18(12):e1011062. doi: 10.1371/journal.ppat.1011062. eCollection 2022 Dec.

Abstract

Tobacco mosaic virus movement protein (TMV MP) is essential for virus spread between cells. To accomplish its task, TMV MP binds viral RNA, interacts with components of the cytoskeleton, and increases the size exclusion limit (SEL) of plasmodesmata. Plasmodesmata are gated intercellular channels that allow passage of small molecules and macromolecules, including RNA and protein, between plant cells. Moreover, plasmodesmata are diverse and those connecting different cell types appear to have unique mechanisms to regulate macromolecular trafficking, which likely contributes to the establishment of distinct cell boundaries. Consequently, TMV MP might be competent to mediate RNA transport through some but not all plasmodesmal gates. Due to a lack of viral mutants defective for movement between specific cell types, the ability of TMV MP in this regard is incompletely understood. In contrast, a number of trafficking impaired Potato spindle tuber viroid (PSTVd) mutants have been identified. PSTVd is a systemically infectious non-coding RNA that nevertheless can perform all functions required for replication as well as cell-to-cell and systemic spread. Previous studies have shown that PSTVd employs different structure and sequence elements to move between diverse cell types in host plants, and mutants defective for transport between specific cell types have been identified. Therefore, PSTVd may serve as a tool to analyze the functions of MPs of viral and cellular origin. To probe the RNA transport activity of TMV MP, transgenic plants expressing the protein were inoculated with PSTVd mutants. Remarkably, TMV MP complemented a PSTVd mutant defective for mesophyll entry but could not support two mutants impaired for phloem entry, suggesting it fails to productively interface with plasmodesmata at the phloem boundary and that additional viral and host factors may be required. Consistent with this idea, TMV co-infection, but not the combination of MP and coat protein (CP) expression, was able to complement one of the phloem entry mutants. These observations suggest that phloem loading is a critical impediment to establishing systemic infection that could involve the entire ensemble of TMV proteins. They also demonstrate a novel strategy for analysis of MPs.

摘要

烟草花叶病毒运动蛋白(TMV MP)对于病毒在细胞间的传播至关重要。为了完成其任务,TMV MP 结合病毒 RNA,与细胞骨架的组成部分相互作用,并增加胞间连丝的大小排除极限(SEL)。胞间连丝是允许小分子和大分子(包括 RNA 和蛋白质)在植物细胞之间通过的有门控的细胞间通道。此外,胞间连丝具有多样性,连接不同细胞类型的胞间连丝似乎具有独特的机制来调节大分子运输,这可能有助于建立独特的细胞边界。因此,TMV MP 可能有能力通过一些但不是所有的胞间连丝门介导 RNA 运输。由于缺乏在特定细胞类型之间运动缺陷的病毒突变体,因此在这方面 TMV MP 的能力还不完全清楚。相比之下,已经鉴定出许多运输缺陷的马铃薯纺锤块茎类病毒(PSTVd)突变体。PSTVd 是一种系统性感染的非编码 RNA,但它仍然可以执行复制以及细胞间和系统传播所需的所有功能。先前的研究表明,PSTVd 利用不同的结构和序列元件在宿主植物的不同细胞类型之间移动,并且已经鉴定出在特定细胞类型之间运输缺陷的突变体。因此,PSTVd 可以作为一种工具来分析病毒和细胞来源的 MPs 的功能。为了探究 TMV MP 的 RNA 运输活性,表达该蛋白的转基因植物被接种了 PSTVd 突变体。值得注意的是,TMV MP 补充了一个对叶肉进入有缺陷的 PSTVd 突变体,但不能支持两个对韧皮部进入有缺陷的突变体,这表明它不能与韧皮部边界的胞间连丝有效地相互作用,并且可能需要额外的病毒和宿主因子。与这一观点一致的是,TMV 共感染,而不是 MP 和外壳蛋白(CP)表达的组合,能够补充一个韧皮部进入突变体。这些观察结果表明,韧皮部装载是建立系统感染的一个关键障碍,这可能涉及 TMV 蛋白的整个组合。它们还展示了一种分析 MPs 的新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0d9/9829174/8b5f5530fe70/ppat.1011062.g001.jpg

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