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采用数字和亮度分析方法研究活细胞中埃博拉病毒 VP40 的组装和寡聚化。

Investigation of Ebola VP40 assembly and oligomerization in live cells using number and brightness analysis.

机构信息

Department of Chemistry and Biochemistry and the Eck Institute for Global Health, University of Notre Dame, Notre Dame, Indiana, USA.

出版信息

Biophys J. 2012 Jun 6;102(11):2517-25. doi: 10.1016/j.bpj.2012.04.022. Epub 2012 Jun 5.

Abstract

Ebola virus assembles and buds from the inner leaflet of the plasma membrane of mammalian cells, which is primarily attributed to its major matrix protein VP40. Oligomerization of VP40 has been shown to be essential to the life cycle of the virus including formation of virions from infected cells. To date, VP40 oligomerization has mainly been assessed by chemical cross-linking following cell fractionation studies with VP40 transfected cells. This has made it difficult to discern the spatial and temporal dynamics of VP40 oligomerization. To gain a better understanding of the VP40 assembly and oligomerization process in live cells, we have employed real-time imaging of enhanced green fluorescent protein tagged VP40. Here, we use both confocal and total internal reflection microscopy coupled with number and brightness analysis to show that VP40 oligomers are localized on the plasma membrane and are highly enriched at sites of membrane protrusion, consistent with sites of viral budding. These filamentous plasma membrane protrusion sites harbor VP40 hexamers, octamers, and higher order oligomers. Consistent with previous reports, abrogation of VP40 oligomerization through mutagenesis greatly diminished VP40 egress and also abolished membrane protrusion sites enriched with VP40. In sum, real-time single-molecule imaging of fluorescently labeled Ebola VP40 is able to resolve the spatial and temporal dynamics of VP40 oligomerization.

摘要

埃博拉病毒从哺乳动物细胞质膜的内层小叶组装和出芽,这主要归因于其主要基质蛋白 VP40。已经表明,VP40 的寡聚化对于病毒的生命周期至关重要,包括从感染细胞中形成病毒粒子。迄今为止,VP40 寡聚化主要通过转染 VP40 的细胞的细胞分级研究中的化学交联来评估。这使得难以辨别 VP40 寡聚化的空间和时间动态。为了更好地了解活细胞中 VP40 的组装和寡聚化过程,我们采用了增强型绿色荧光蛋白标记的 VP40 的实时成像。在这里,我们使用共聚焦和全内反射显微镜结合数量和亮度分析来显示 VP40 寡聚体定位于质膜上,并在膜突起点处高度富集,与病毒出芽的部位一致。这些丝状质膜突起点含有 VP40 六聚体、八聚体和更高阶的寡聚体。与先前的报告一致,通过突变使 VP40 寡聚化失活大大减少了 VP40 的出芽,并且还消除了富含 VP40 的膜突起点。总之,荧光标记的埃博拉病毒 VP40 的实时单分子成像能够解析 VP40 寡聚化的空间和时间动态。

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