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登革热病毒感染的蚊细胞中复制位点的超微结构特征和三维结构。

Ultrastructural characterization and three-dimensional architecture of replication sites in dengue virus-infected mosquito cells.

机构信息

Markey Center for Structural Biology, Department of Biological Sciences, Purdue University, West Lafayette, Indiana, USA.

出版信息

J Virol. 2014 May;88(9):4687-97. doi: 10.1128/JVI.00118-14. Epub 2014 Feb 12.

Abstract

UNLABELLED

During dengue virus infection of host cells, intracellular membranes are rearranged into distinct subcellular structures such as double-membrane vesicles, convoluted membranes, and tubular structures. Recent electron tomographic studies have provided a detailed three-dimensional architecture of the double-membrane vesicles, representing the sites of dengue virus replication, but temporal and spatial evidence linking membrane morphogenesis with viral RNA synthesis is lacking. Integrating techniques in electron tomography and molecular virology, we defined an early period in virus-infected mosquito cells during which the formation of a virus-modified membrane structure, the double-membrane vesicle, is proportional to the rate of viral RNA synthesis. Convoluted membranes were absent in dengue virus-infected C6/36 cells. Electron tomographic reconstructions elucidated a high-resolution view of the replication complexes inside vesicles and allowed us to identify distinct pathways of particle formation. Hence, our findings extend the structural details of dengue virus replication within mosquito cells and highlight their differences from mammalian cells.

IMPORTANCE

Dengue virus induces several distinct intracellular membrane structures within the endoplasmic reticulum of mammalian cells. These structures, including double-membrane vesicles and convoluted membranes, are linked, respectively, with viral replication and viral protein processing. However, dengue virus cycles between two disparate animal groups with differing physiologies: mammals and mosquitoes. Using techniques in electron microscopy, we examined the differences between intracellular structures induced by dengue virus in mosquito cells. Additionally, we utilized techniques in molecular virology to temporally link events in virus replication to the formation of these dengue virus-induced membrane structures.

摘要

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在宿主细胞感染登革热病毒期间,细胞内的膜被重新排列成不同的亚细胞结构,如双层膜泡、卷曲膜和管状结构。最近的电子断层扫描研究提供了关于双层膜泡的详细三维结构,该结构代表了登革热病毒复制的部位,但缺乏与膜形态发生与病毒 RNA 合成相关的时空证据。我们综合运用电子断层扫描和分子病毒学技术,在感染病毒的蚊子细胞中确定了一个早期时期,在此期间,病毒修饰的膜结构双层膜泡的形成与病毒 RNA 合成的速度成正比。在感染登革热病毒的 C6/36 细胞中没有卷曲膜。电子断层扫描重建阐明了泡内复制复合物的高分辨率视图,并使我们能够识别出不同的颗粒形成途径。因此,我们的发现扩展了蚊子细胞内登革热病毒复制的结构细节,并强调了它们与哺乳动物细胞的差异。

重要性

登革热病毒在哺乳动物细胞的内质网内诱导几种不同的细胞内膜结构。这些结构,包括双层膜泡和卷曲膜,分别与病毒复制和病毒蛋白加工有关。然而,登革热病毒在具有不同生理特性的两种截然不同的动物群之间循环:哺乳动物和蚊子。我们使用电子显微镜技术检查了登革热病毒在蚊子细胞中诱导的细胞内结构的差异。此外,我们还运用分子病毒学技术将病毒复制过程中的事件与这些登革热病毒诱导的膜结构的形成进行了时间上的关联。

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