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烟草花叶病毒运动蛋白与生物膜结合但不整合到生物膜中。

The Tobacco mosaic virus movement protein associates with but does not integrate into biological membranes.

作者信息

Peiró Ana, Martínez-Gil Luis, Tamborero Silvia, Pallás Vicente, Sánchez-Navarro Jesús A, Mingarro Ismael

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat de València, Burjassot, Spain.

出版信息

J Virol. 2014 Mar;88(5):3016-26. doi: 10.1128/JVI.03648-13. Epub 2013 Dec 26.

Abstract

UNLABELLED

Plant positive-strand RNA viruses require association with plant cell endomembranes for viral translation and replication, as well as for intra- and intercellular movement of the viral progeny. The membrane association and RNA binding of the Tobacco mosaic virus (TMV) movement protein (MP) are vital for orchestrating the macromolecular network required for virus movement. A previously proposed topological model suggests that TMV MP is an integral membrane protein with two putative α-helical transmembrane (TM) segments. Here we tested this model using an experimental system that measured the efficiency with which natural polypeptide segments were inserted into the ER membrane under conditions approximating the in vivo situation, as well as in planta. Our results demonstrated that the two hydrophobic regions (HRs) of TMV MP do not span biological membranes. We further found that mutations to alter the hydrophobicity of the first HR modified membrane association and precluded virus movement. We propose a topological model in which the TMV MP HRs intimately associate with the cellular membranes, allowing maximum exposure of the hydrophilic domains of the MP to the cytoplasmic cellular components.

IMPORTANCE

To facilitate plant viral infection and spread, viruses encode one or more movement proteins (MPs) that interact with ER membranes. The present work investigated the membrane association of the 30K MP of Tobacco mosaic virus (TMV), and the results challenge the previous topological model, which predicted that the TMV MP behaves as an integral membrane protein. The current data provide greatly needed clarification of the topological model and provide substantial evidence that TMV MP is membrane associated only at the cytoplasmic face of the membrane and that neither of its domains is integrated into the membrane or translocated into the lumen. Understanding the topology of MPs in the ER is vital for understanding the role of the ER in plant virus transport and for predicting interactions with host factors that mediate resistance to plant viruses.

摘要

未标记

植物正链RNA病毒需要与植物细胞内膜结合以进行病毒翻译和复制,以及病毒后代的细胞内和细胞间移动。烟草花叶病毒(TMV)移动蛋白(MP)的膜结合和RNA结合对于协调病毒移动所需的大分子网络至关重要。先前提出的拓扑模型表明,TMV MP是一种整合膜蛋白,具有两个假定的α-螺旋跨膜(TM)区段。在这里,我们使用一个实验系统测试了该模型,该系统测量了在接近体内情况的条件下以及在植物体内天然多肽区段插入内质网(ER)膜的效率。我们的结果表明,TMV MP的两个疏水区域(HRs)不跨越生物膜。我们进一步发现,改变第一个HR疏水性的突变改变了膜结合并阻止了病毒移动。我们提出了一个拓扑模型,其中TMV MP的HRs与细胞膜紧密结合,使MP的亲水区段最大程度地暴露于细胞质细胞成分。

重要性

为促进植物病毒感染和传播,病毒编码一种或多种与ER膜相互作用的移动蛋白(MPs)。本研究调查了烟草花叶病毒(TMV)30K MP的膜结合情况,结果对先前的拓扑模型提出了挑战,该模型预测TMV MP表现为整合膜蛋白。目前的数据为拓扑模型提供了急需的澄清,并提供了大量证据表明TMV MP仅在膜的细胞质面与膜结合,其任何一个结构域都没有整合到膜中或转运到内腔中。了解ER中MPs的拓扑结构对于理解ER在植物病毒运输中的作用以及预测与介导植物病毒抗性的宿主因子的相互作用至关重要。

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