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植物胞吞作用中的动力蛋白样蛋白被马铃薯 Y 病毒科病毒劫持以增强病毒感染。

Dynamin-Like Proteins of Endocytosis in Plants Are Coopted by Potyviruses To Enhance Virus Infection.

机构信息

London Research and Development Centre, Agriculture and Agri-Food Canada, London, Ontario, Canada.

Institute of Industrial Crops, Jiangsu Academy of Agricultural Sciences/Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Nanjing, Jiangsu, People's Republic of China.

出版信息

J Virol. 2018 Nov 12;92(23). doi: 10.1128/JVI.01320-18. Print 2018 Dec 1.

Abstract

Endocytosis and endosomal trafficking regulate the proteins targeted to the plasma membrane and play essential roles in diverse cellular processes, including responses to pathogen attack. Here, we report the identification of (soybean) endocytosis dynamin-like protein 5A (GmSDL5A) associated with purified soybean mosaic virus (SMV) virions from soybean using a bottom-up proteomics approach. Knockdown of and its homologous gene inhibits SMV infection in soybean. The role of analogous dynamin-like proteins in potyvirus infection was further confirmed and investigated using the /turnip mosaic virus (TuMV) pathosystem. We demonstrate that dynamin-related proteins 2A and 2B in (AtDRP2A, AtDRP2B), homologs of GmSDL5A, are recruited to the virus replication complex (VRC) of TuMV. TuMV infection is inhibited in both () and knockout mutants. Overexpression of AtDRP2 promotes TuMV replication and intercellular movement. AtRDP2 interacts with TuMV VPg, CP, CI, and 6K2. Of these viral proteins, VPg, CP, and CI are essential for viral intercellular movement, and 6K2, VPg, and CI are critical components of the VRC. We reveal that VPg and CI are present in the punctate structures labeled by the endocytic tracer FM4-64, suggesting that VPg and CI can be endocytosed. Treatment of plant leaves with a dynamin-specific inhibitor disrupts the delivery of VPg and CI to endocytic structures and suppresses TuMV replication and intercellular movement. Taken together, these data suggest that dynamin-like proteins are novel host factors of potyviruses and that endocytic processes are involved in potyvirus infection. It is well known that animal viruses enter host cells via endocytosis, whereas plant viruses require physical assistance, such as human and insect activities, to penetrate the host cell to establish their infection. In this study, we report that the endocytosis pathway is also involved in virus infection in plants. We show that plant potyviruses recruit endocytosis dynamin-like proteins to support their infection. Depletion of them by knockout of the corresponding genes suppresses virus replication, whereas overexpression of them enhances virus replication and intercellular movement. We also demonstrate that the dynamin-like proteins interact with several viral proteins that are essential for virus replication and cell-to-cell movement. We further show that treatment of a dynamin-specific inhibitor disrupts endocytosis and inhibits virus replication and intercellular movement. Therefore, the dynamin-like proteins are novel host factors of potyviruses. The corresponding genes may be manipulated using advanced biotechnology to control potyviral diseases.

摘要

内吞作用和内体运输调节靶向质膜的蛋白质,并在多种细胞过程中发挥重要作用,包括对病原体攻击的反应。在这里,我们使用自上而下的蛋白质组学方法,从大豆中纯化的大豆花叶病毒 (SMV) 病毒粒子中鉴定出与大豆花叶病毒 (SMV) 相关的内吞作用和内体运输调节蛋白 5A(GmSDL5A)。 (大豆)内吞作用 dynamin 样蛋白 5A(GmSDL5A)及其同源基因的敲低抑制了大豆花叶病毒的感染。使用 (芜菁花叶病毒)/芜菁花叶病毒(TuMV)病理系统进一步证实和研究了类似 dynamin 样蛋白在马铃薯 Y 病毒感染中的作用。我们证明了拟南芥中的 dynamin 相关蛋白 2A 和 2B(AtDRP2A、AtDRP2B),即 GmSDL5A 的同源物,被招募到芜菁花叶病毒的病毒复制复合物(VRC)中。TuMV 感染在 (拟南芥)和 (AtDRP2B)敲除突变体中均受到抑制。AtDRP2 的过表达促进了 TuMV 的复制和细胞间运动。AtRDP2 与 TuMV VPg、CP、CI 和 6K2 相互作用。在这些病毒蛋白中,VPg、CP 和 CI 是病毒细胞间运动所必需的,而 6K2、VPg 和 CI 是 VRC 的关键组成部分。我们揭示了 VPg 和 CI 存在于被内吞作用示踪剂 FM4-64 标记的点状结构中,表明 VPg 和 CI 可以被内吞。用一种针对 dynamin 的特异性抑制剂处理植物叶片会破坏 VPg 和 CI 向内吞结构的传递,并抑制 TuMV 的复制和细胞间运动。总之,这些数据表明 dynamin 样蛋白是马铃薯 Y 病毒的新型宿主因子,内吞作用参与了马铃薯 Y 病毒的感染。众所周知,动物病毒通过内吞作用进入宿主细胞,而植物病毒需要人类和昆虫等活动的物理帮助才能穿透宿主细胞建立感染。在这项研究中,我们报告称,内吞作用途径也参与了植物中的病毒感染。我们表明,植物马铃薯 Y 病毒招募内吞作用 dynamin 样蛋白以支持其感染。通过敲除相应基因耗尽它们会抑制病毒复制,而过表达它们会增强病毒复制和细胞间运动。我们还证明了 dynamin 样蛋白与几种对病毒复制和细胞间运动至关重要的病毒蛋白相互作用。我们还进一步表明,用一种针对 dynamin 的特异性抑制剂处理会破坏内吞作用并抑制病毒复制和细胞间运动。因此,dynamin 样蛋白是马铃薯 Y 病毒的新型宿主因子。可以使用先进的生物技术操纵相应的基因来控制马铃薯 Y 病毒病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95ad/6232491/6f7dfe349a41/zjv0231840410001.jpg

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