Department of Virology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Department of Virology, Faculty of Medicine, Kyushu University, Fukuoka, Japan
J Virol. 2020 Jun 1;94(12). doi: 10.1128/JVI.00050-20.
Mumps virus (MuV), an enveloped RNA virus of the family and the causative agent of mumps, affects the salivary glands and other glandular tissues as well as the central nervous system. The virus enters the cell by inducing the fusion of its envelope with the plasma membrane of the target cell. Membrane fusion is mediated by MuV envelope proteins: the hemagglutinin-neuraminidase and fusion (F) protein. Cleavage of the MuV F protein (MuV-F) into two subunits by the cellular protease furin is a prerequisite for fusion and virus infectivity. Here, we show that 293T (a derivative of HEK293) cells do not produce syncytia upon expression of MuV envelope proteins or MuV infection. This failure is caused by the inefficient MuV-F cleavage despite the presence of functional furin in 293T cells. An expression cloning strategy revealed that overexpression of lysosome-associated membrane proteins (LAMPs) confers on 293T cells the ability to produce syncytia upon expression of MuV envelope proteins. The LAMP family comprises the ubiquitously expressed LAMP1 and LAMP2, the interferon-stimulated gene product LAMP3, and the cell type-specific proteins. The expression level of the LAMP3 gene, but not of LAMP1 and LAMP2 genes, differed markedly between 293T and HEK293 cells. Overexpression of LAMP1, LAMP2, or LAMP3 allowed 293T cells to process MuV-F efficiently. Furthermore, these LAMPs were found to interact with both MuV-F and furin. Our results indicate that LAMPs support the furin-mediated cleavage of MuV-F and that, among them, LAMP3 may be critical for the process, at least in certain cells. The cellular protease furin mediates proteolytic cleavage of many host and pathogen proteins and plays an important role in viral envelope glycoprotein maturation. MuV, an enveloped RNA virus of the family and an important human pathogen, enters the cell through the fusion of its envelope with the plasma membrane of the target cell. Membrane fusion is mediated by the viral attachment protein and the F protein. Cleavage of MuV-F into two subunits by furin is a prerequisite for fusion and virus infectivity. Here, we show that LAMPs support the furin-mediated cleavage of MuV-F. Expression levels of LAMPs affect the processing of MuV-F and MuV-mediated membrane fusion. Among LAMPs, the interferon-stimulated gene product LAMP3 is most critical in certain cells. Our study provides potential targets for anti-MuV therapeutics.
腮腺炎病毒(MuV)是一种包膜 RNA 病毒,属于副黏液病毒科,是腮腺炎的病原体。它会影响唾液腺和其他腺组织以及中枢神经系统。病毒通过诱导其包膜与靶细胞的质膜融合进入细胞。膜融合由 MuV 包膜蛋白介导:血凝素神经氨酸酶和融合(F)蛋白。细胞蛋白酶弗林将 MuV F 蛋白(MuV-F)切割成两个亚基是融合和病毒感染性的前提。在这里,我们表明 293T(HEK293 的衍生物)细胞在表达 MuV 包膜蛋白或 MuV 感染时不会产生合胞体。尽管 293T 细胞中存在功能性弗林,但 MuV-F 切割效率低下导致了这种失败。表达克隆策略表明,溶酶体相关膜蛋白(LAMPs)的过表达赋予 293T 细胞在表达 MuV 包膜蛋白时产生合胞体的能力。LAMP 家族包括普遍表达的 LAMP1 和 LAMP2、干扰素刺激基因产物 LAMP3 和细胞特异性蛋白。293T 和 HEK293 细胞之间 LAMP3 基因的表达水平差异显著,但 LAMP1 和 LAMP2 基因的表达水平差异不显著。LAMP1、LAMP2 或 LAMP3 的过表达允许 293T 细胞有效地处理 MuV-F。此外,这些 LAMPs 被发现与 MuV-F 和弗林都相互作用。我们的结果表明,LAMPs 支持 MuV-F 的弗林介导的切割,并且其中 LAMP3 可能在该过程中至关重要,至少在某些细胞中是这样。细胞蛋白酶弗林介导许多宿主和病原体蛋白的蛋白水解切割,并在病毒 envelope glycoprotein 成熟中发挥重要作用。MuV 是一种包膜 RNA 病毒,属于副黏液病毒科,是一种重要的人类病原体,通过其包膜与靶细胞质膜融合进入细胞。膜融合由病毒附着蛋白和 F 蛋白介导。弗林将 MuV-F 切割成两个亚基是融合和病毒感染性的前提。在这里,我们表明 LAMPs 支持 MuV-F 的弗林介导的切割。LAMPs 的表达水平影响 MuV-F 的加工和 MuV 介导的膜融合。在 LAMPs 中,干扰素刺激基因产物 LAMP3 在某些细胞中最为关键。我们的研究为抗 MuV 治疗提供了潜在的靶点。