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The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus

Plant viruses move through plasmodesmata to infect new cells. The plant endoplasmic reticulum (ER) is interconnected among cells via the ER desmotubule in the plasmodesma across the cell wall, forming a continuous ER network throughout the entire plant. This ER continuity is unique to plants and has...

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Autores principales: Feng, Zhike, Xue, Fan, Xu, Min, Chen, Xiaojiao, Zhao, Wenyang, Garcia-Murria, Maria J., Mingarro, Ismael, Liu, Yong, Huang, Ying, Jiang, Lei, Zhu, Min, Tao, Xiaorong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4749231/
https://www.ncbi.nlm.nih.gov/pubmed/26863622
http://dx.doi.org/10.1371/journal.ppat.1005443
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author Feng, Zhike
Xue, Fan
Xu, Min
Chen, Xiaojiao
Zhao, Wenyang
Garcia-Murria, Maria J.
Mingarro, Ismael
Liu, Yong
Huang, Ying
Jiang, Lei
Zhu, Min
Tao, Xiaorong
author_facet Feng, Zhike
Xue, Fan
Xu, Min
Chen, Xiaojiao
Zhao, Wenyang
Garcia-Murria, Maria J.
Mingarro, Ismael
Liu, Yong
Huang, Ying
Jiang, Lei
Zhu, Min
Tao, Xiaorong
author_sort Feng, Zhike
collection PubMed
description Plant viruses move through plasmodesmata to infect new cells. The plant endoplasmic reticulum (ER) is interconnected among cells via the ER desmotubule in the plasmodesma across the cell wall, forming a continuous ER network throughout the entire plant. This ER continuity is unique to plants and has been postulated to serve as a platform for the intercellular trafficking of macromolecules. In the present study, the contribution of the plant ER membrane transport system to the intercellular trafficking of the NSm movement protein and Tomato spotted wilt tospovirus (TSWV) is investigated. We showed that TSWV NSm is physically associated with the ER membrane in Nicotiana benthamiana plants. An NSm-GFP fusion protein transiently expressed in single leaf cells was trafficked into neighboring cells. Mutations in NSm that impaired its association with the ER or caused its mis-localization to other subcellular sites inhibited cell-to-cell trafficking. Pharmacological disruption of the ER network severely inhibited NSm-GFP trafficking but not GFP diffusion. In the Arabidopsis thaliana mutant rhd3 with an impaired ER network, NSm-GFP trafficking was significantly reduced, whereas GFP diffusion was not affected. We also showed that the ER-to-Golgi secretion pathway and the cytoskeleton transport systems were not involved in the intercellular trafficking of TSWV NSm. Importantly, TSWV cell-to-cell spread was delayed in the ER-defective rhd3 mutant, and this reduced viral infection was not due to reduced replication. On the basis of robust biochemical, cellular and genetic analysis, we established that the ER membrane transport system serves as an important direct route for intercellular trafficking of NSm and TSWV.
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spelling pubmed-47492312016-02-26 The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus Feng, Zhike Xue, Fan Xu, Min Chen, Xiaojiao Zhao, Wenyang Garcia-Murria, Maria J. Mingarro, Ismael Liu, Yong Huang, Ying Jiang, Lei Zhu, Min Tao, Xiaorong PLoS Pathog Research Article Plant viruses move through plasmodesmata to infect new cells. The plant endoplasmic reticulum (ER) is interconnected among cells via the ER desmotubule in the plasmodesma across the cell wall, forming a continuous ER network throughout the entire plant. This ER continuity is unique to plants and has been postulated to serve as a platform for the intercellular trafficking of macromolecules. In the present study, the contribution of the plant ER membrane transport system to the intercellular trafficking of the NSm movement protein and Tomato spotted wilt tospovirus (TSWV) is investigated. We showed that TSWV NSm is physically associated with the ER membrane in Nicotiana benthamiana plants. An NSm-GFP fusion protein transiently expressed in single leaf cells was trafficked into neighboring cells. Mutations in NSm that impaired its association with the ER or caused its mis-localization to other subcellular sites inhibited cell-to-cell trafficking. Pharmacological disruption of the ER network severely inhibited NSm-GFP trafficking but not GFP diffusion. In the Arabidopsis thaliana mutant rhd3 with an impaired ER network, NSm-GFP trafficking was significantly reduced, whereas GFP diffusion was not affected. We also showed that the ER-to-Golgi secretion pathway and the cytoskeleton transport systems were not involved in the intercellular trafficking of TSWV NSm. Importantly, TSWV cell-to-cell spread was delayed in the ER-defective rhd3 mutant, and this reduced viral infection was not due to reduced replication. On the basis of robust biochemical, cellular and genetic analysis, we established that the ER membrane transport system serves as an important direct route for intercellular trafficking of NSm and TSWV. Public Library of Science 2016-02-10 /pmc/articles/PMC4749231/ /pubmed/26863622 http://dx.doi.org/10.1371/journal.ppat.1005443 Text en © 2016 Feng et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Feng, Zhike
Xue, Fan
Xu, Min
Chen, Xiaojiao
Zhao, Wenyang
Garcia-Murria, Maria J.
Mingarro, Ismael
Liu, Yong
Huang, Ying
Jiang, Lei
Zhu, Min
Tao, Xiaorong
The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus
title The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus
title_full The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus
title_fullStr The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus
title_full_unstemmed The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus
title_short The ER-Membrane Transport System Is Critical for Intercellular Trafficking of the NSm Movement Protein and Tomato Spotted Wilt Tospovirus
title_sort er-membrane transport system is critical for intercellular trafficking of the nsm movement protein and tomato spotted wilt tospovirus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4749231/
https://www.ncbi.nlm.nih.gov/pubmed/26863622
http://dx.doi.org/10.1371/journal.ppat.1005443
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