Department of Veterinary and Biomedical Sciences, College of Veterinary Medicine, University of Minnesota, St. Paul, Minnesota, USA.
Department of Biochemistry, Molecular Biology and Biophysics, College of Biological Sciences, University of Minnesota, Twin Cities, Minneapolis, Minnesota, USA.
J Virol. 2024 Oct 22;98(10):e0079924. doi: 10.1128/jvi.00799-24. Epub 2024 Sep 12.
Mammarenaviruses include several highly virulent pathogens (e.g., Lassa virus) capable of causing severe hemorrhagic fever diseases for which there are no approved vaccines and limited treatment options. Mammarenaviruses are enveloped, bi-segmented ambisense RNA viruses. There is limited knowledge about cellular proteins incorporated into progeny virion particles and their potential biological roles in viral infection. Pichinde virus (PICV) is a prototypic arenavirus used to characterize mammarenavirus replication and pathogenesis. We have developed a recombinant PICV with a tri-segmented RNA genome as a viral vector platform. Whether the tri-segmented virion differs from the wild-type bi-segmented one in viral particle morphology and protein composition has not been addressed. In this study, recombinant PICV (rPICV) virions with a bi-segmented (rP18bi) and a tri-segmented (rP18tri) genome were purified by density-gradient ultracentrifugation and analyzed by cryo-electron microscopy and mass spectrometry. Both virion types are pleomorphic with spherical morphology and have no significant difference in size despite rP18tri having denser particles. Both virion types also contain similar sets of cellular proteins. Among the highly enriched virion-associated cellular proteins are components of the endosomal sorting complex required for transport pathway and vesicle trafficking, such as ALIX, Tsg101, VPS, CHMP, and Ras-associated binding proteins, which have known functions in virus assembly and budding. Other enriched cellular proteins include peripheral and transmembrane proteins, chaperone proteins, and ribosomal proteins; their biological roles in viral infection warrant further analysis. Our study provides important insights into mammarenavirus particle formation and aids in the future development of viral vectors and antiviral discovery.IMPORTANCEMammarenaviruses, such as Lassa virus, are enveloped RNA viruses that can cause severe hemorrhagic fever diseases (Lassa fever) with no approved vaccine and limited therapeutic options. Cellular proteins incorporated into progeny virion particles and their biological roles in mammarenavirus infection have not been well characterized. Pichinde virus (PICV) is a prototypic mammarenavirus used as a surrogate model for Lassa fever. We used cryo-electron microscopy and proteomic analysis to characterize the morphology and protein contents of the purified PICV particles that package either two (bi-segmented) or three (tri-segmented) genomic RNA segments. Our results demonstrate a similar virion morphology but different particle density for the bi- and tri-segmented viral particles and reveal major virion-associated cellular proteins. This study provides important insights into the virus-host interactions that can be used for antiviral development and optimizing arenavirus-based vaccine vectors.
沙粒病毒属包括几种高毒力病原体(例如拉萨病毒),能够引起严重的出血性发热疾病,目前尚无批准的疫苗和有限的治疗选择。沙粒病毒属是有包膜的、双节段的反义 RNA 病毒。关于整合到子代病毒粒子中的细胞蛋白及其在病毒感染中的潜在生物学作用,人们知之甚少。皮钦德病毒(PICV)是一种用于表征沙粒病毒复制和发病机制的典型沙粒病毒。我们开发了一种带有三段 RNA 基因组的重组 PICV,作为病毒载体平台。尚未解决三片段病毒粒子在病毒粒子形态和蛋白组成方面是否与野生型双片段病毒粒子不同的问题。在这项研究中,通过密度梯度超速离心纯化了具有双片段(rP18bi)和三片段(rP18tri)基因组的重组 PICV(rPICV)病毒粒子,并通过冷冻电子显微镜和质谱分析进行了分析。两种病毒粒子均呈多形性,具有球形形态,大小无明显差异,尽管 rP18tri 的颗粒密度较大。两种病毒粒子还含有相似的细胞蛋白组。在高度富集的病毒相关细胞蛋白中,有内体分选复合物所需的运输途径和囊泡运输的成分,例如 ALIX、Tsg101、VPS、CHMP 和 Ras 相关结合蛋白,它们在病毒组装和出芽中具有已知的功能。其他富含的细胞蛋白包括外周和跨膜蛋白、伴侣蛋白和核糖体蛋白;它们在病毒感染中的生物学作用值得进一步分析。我们的研究提供了有关沙粒病毒粒子形成的重要见解,并有助于未来开发病毒载体和抗病毒药物的发现。
重要性:沙粒病毒属,如拉萨病毒,是有包膜的 RNA 病毒,可引起严重的出血性发热疾病(拉萨热),目前尚无批准的疫苗和有限的治疗选择。整合到子代病毒粒子中的细胞蛋白及其在沙粒病毒感染中的生物学作用尚未得到很好的描述。皮钦德病毒(PICV)是一种典型的沙粒病毒,可用作拉萨热的替代模型。我们使用冷冻电子显微镜和蛋白质组学分析来表征包装两种(双片段)或三种(三片段)基因组 RNA 片段的纯化 PICV 粒子的形态和蛋白含量。我们的结果表明,双片段和三片段病毒粒子具有相似的病毒粒子形态,但颗粒密度不同,并揭示了主要的病毒相关细胞蛋白。这项研究提供了有关病毒-宿主相互作用的重要见解,可用于抗病毒药物的开发和优化基于沙粒病毒的疫苗载体。