State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
Chinese Academy of Sciences Center for Excellence in Biotic Interactions, University of Chinese Academy of Sciences, Beijing 100049, China.
Proc Natl Acad Sci U S A. 2022 Sep 6;119(36):e2207848119. doi: 10.1073/pnas.2207848119. Epub 2022 Aug 29.
Exosomes play a key role in virus exocytosis and transmission. The exportin family is usually responsible for cargo nucleocytoplasmic trafficking, and they are frequently found in exosomes. However, the function of exportins sorted in exosomes remains unknown. Here, we successfully isolated "cup holder"-like exosomes from the saliva of ∼30,000 small brown planthoppers, which are vectors of rice stripe virus (RSV). RSV virions were packed in comparatively large exosomes. Four viral genomic RNAs at a certain ratio were identified in the saliva exosomes. The virions contained in the saliva exosomes were capable of replicating and causing disease in rice plants. Interference with each phase of the insect exosome system affected the transmission of RSV from the insect vectors to rice plants. Fragmented exportin 6 was coimmunoprecipitated with viral nucleocapsid protein in saliva and sorted to exosomes via interactions with the cargo sorting protein VPS37a. When the expression of was knocked down, the amounts of RSV secreted in saliva and rice plants were reduced by 60% and 74%, respectively. These results showed that exportin 6 acted as a vehicle for transporting RSV into exosomes to overcome the barrier of insect salivary glands for horizontal transmission. Exportin 6 would represent an ideal target that could be manipulated to control the outbreak of insect-borne viruses in the future.
外泌体在病毒胞吐和传播中发挥着关键作用。输出蛋白家族通常负责货物的核质转运,并且它们经常存在于外泌体中。然而,在外泌体中分拣的输出蛋白的功能仍然未知。在这里,我们成功地从小褐飞虱(约 30000 只)的唾液中分离出了“杯托”样的外泌体,小褐飞虱是水稻条纹病毒(RSV)的载体。RSV 病毒粒子被包装在相对较大的外泌体中。在唾液外泌体中鉴定出四种以一定比例存在的病毒基因组 RNA。包含在唾液外泌体中的病毒粒子能够在水稻植株中复制并引起疾病。干扰昆虫外泌体系统的各个阶段都会影响 RSV 从昆虫载体传播到水稻植株。碎裂的输出蛋白 6 与唾液中的病毒核衣壳蛋白一起被共免疫沉淀,并通过与货物分拣蛋白 VPS37a 的相互作用被分拣到外泌体中。当表达被敲低时,RSV 在唾液和水稻植株中分泌的量分别减少了 60%和 74%。这些结果表明,输出蛋白 6 充当了将 RSV 运输到外泌体中的载体,以克服昆虫唾液腺对水平传播的障碍。输出蛋白 6 将成为一个理想的靶点,可以通过操纵它来控制未来昆虫传播病毒的爆发。