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冠状病毒核衣壳蛋白与病毒复制酶-转录酶复合物的非结构蛋白 3 之间关键相互作用的特性。

Characterization of a critical interaction between the coronavirus nucleocapsid protein and nonstructural protein 3 of the viral replicase-transcriptase complex.

机构信息

Wadsworth Center, New York State Department of Health, Albany, New York, USA.

出版信息

J Virol. 2013 Aug;87(16):9159-72. doi: 10.1128/JVI.01275-13. Epub 2013 Jun 12.

Abstract

The coronavirus nucleocapsid protein (N) plays an essential structural role in virions through a network of interactions with positive-strand viral genomic RNA, the envelope membrane protein (M), and other N molecules. Additionally, N protein participates in at least one stage of the complex mechanism of coronavirus RNA synthesis. We previously uncovered an unanticipated interaction between N and the largest subunit of the viral replicase-transcriptase complex, nonstructural protein 3 (nsp3). This was found through analysis of revertants of a severely defective mutant of murine hepatitis virus (MHV) in which the N gene was replaced with that of its close relative, bovine coronavirus (BCoV). In the work reported here, we constructed BCoV chimeras and other mutants of MHV nsp3 and obtained complementary genetic evidence for its association with N protein. We found that the N-nsp3 interaction maps to the amino-terminal ubiquitin-like domain of nsp3, which is essential for the virus. The interaction does not require the adjacent acidic domain of nsp3, which is dispensable. In addition, we demonstrated a complete correspondence between N-nsp3 genetic interactions and the ability of N protein to enhance the infectivity of transfected coronavirus genomic RNA. The latter function of N was shown to depend on both of the RNA-binding domains of N, as well as on the serine- and arginine-rich central region of N, which binds nsp3. Our results support a model in which the N-nsp3 interaction serves to tether the genome to the newly translated replicase-transcriptase complex at a very early stage of infection.

摘要

冠状病毒核衣壳蛋白(N)通过与正链病毒基因组 RNA、包膜膜蛋白(M)和其他 N 分子的相互作用,在病毒粒子中发挥重要的结构作用。此外,N 蛋白参与冠状病毒 RNA 合成的复杂机制的至少一个阶段。我们之前发现 N 蛋白与病毒复制酶-转录酶复合物的大亚基非结构蛋白 3(nsp3)之间存在意想不到的相互作用。这是通过分析鼠肝炎病毒(MHV)的一个严重缺陷突变体的回复突变体发现的,该突变体中 N 基因被其近亲牛冠状病毒(BCoV)的基因取代。在本报告的工作中,我们构建了 BCoV 嵌合体和 MHV nsp3 的其他突变体,并获得了与 N 蛋白相关的互补遗传证据。我们发现 N-nsp3 相互作用映射到 nsp3 的氨基末端泛素样结构域,该结构域对病毒至关重要。相互作用不需要 nsp3 的相邻酸性结构域,该结构域是可有可无的。此外,我们证明了 N-nsp3 遗传相互作用与 N 蛋白增强转染冠状病毒基因组 RNA 的感染性之间存在完全对应关系。N 的后一功能依赖于 N 的两个 RNA 结合结构域以及与 nsp3 结合的富含丝氨酸和精氨酸的 N 中央区域。我们的结果支持这样一种模型,即 N-nsp3 相互作用将基因组在感染的早期阶段固定在新翻译的复制酶-转录酶复合物上。

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