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冠状病毒复制-转录复合物的动力学。

Dynamics of coronavirus replication-transcription complexes.

机构信息

Virology Division, Department of Infectious Diseases and Immunology, Utrecht University, Yalelaan 1, 3584 CL Utrecht, The Netherlands.

出版信息

J Virol. 2010 Feb;84(4):2134-49. doi: 10.1128/JVI.01716-09. Epub 2009 Dec 9.

Abstract

Coronaviruses induce in infected cells the formation of double-membrane vesicles (DMVs) in which the replication-transcription complexes (RTCs) are anchored. To study the dynamics of these coronavirus replicative structures, we generated recombinant murine hepatitis coronaviruses that express tagged versions of the nonstructural protein nsp2. We demonstrated by using immunofluorescence assays and electron microscopy that this protein is recruited to the DMV-anchored RTCs, for which its C terminus is essential. Live-cell imaging of infected cells demonstrated that small nsp2-positive structures move through the cytoplasm in a microtubule-dependent manner. In contrast, large fluorescent structures are rather immobile. Microtubule-mediated transport of DMVs, however, is not required for efficient replication. Biochemical analyses indicated that the nsp2 protein is associated with the cytoplasmic side of the DMVs. Yet, no recovery of fluorescence was observed when (part of) the nsp2-positive foci were bleached. This result was confirmed by the observation that preexisting RTCs did not exchange fluorescence after fusion of cells expressing either a green or a red fluorescent nsp2. Apparently, nsp2, once recruited to the RTCs, is not exchanged with nsp2 present in the cytoplasm or at other DMVs. Our data show a remarkable resemblance to results obtained recently by others with hepatitis C virus. The observations point to intriguing and as yet unrecognized similarities between the RTC dynamics of different plus-strand RNA viruses.

摘要

冠状病毒在感染细胞中诱导形成双层囊泡 (DMV),其中复制转录复合物 (RTC) 被锚定。为了研究这些冠状病毒复制结构的动力学,我们生成了表达标记版本的非结构蛋白 nsp2 的重组鼠肝炎冠状病毒。我们通过免疫荧光测定和电子显微镜证明,这种蛋白质被招募到 DMV 锚定的 RTCs,其 C 端对此至关重要。感染细胞的活细胞成像表明,小的 nsp2 阳性结构以微管依赖性方式在细胞质中移动。相比之下,大的荧光结构则相对不移动。然而,DMV 的微管介导运输并不需要有效的复制。生化分析表明,nsp2 蛋白与 DMV 的细胞质侧相关联。然而,当 (部分) nsp2 阳性焦点被漂白时,没有观察到荧光恢复。这一结果通过观察到在表达绿色或红色荧光 nsp2 的细胞融合后,预先存在的 RTC 没有交换荧光得到证实。显然,一旦被招募到 RTCs,nsp2 就不会与细胞质中或其他 DMV 中的 nsp2 交换。我们的数据与最近其他人用丙型肝炎病毒获得的结果非常相似。这些观察结果表明,不同正链 RNA 病毒的 RTC 动力学之间存在着引人入胜且尚未被认识到的相似之处。

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