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热休克蛋白 90 确保风疹病毒 p150 蛋白的完整性并支持病毒复制。

Heat Shock Protein 90 Ensures the Integrity of Rubella Virus p150 Protein and Supports Viral Replication.

机构信息

Department of Virology 3, National Institute of Infectious Diseases, Tokyo, Japan

Department of Virology 3, National Institute of Infectious Diseases, Tokyo, Japan.

出版信息

J Virol. 2019 Oct 29;93(22). doi: 10.1128/JVI.01142-19. Print 2019 Nov 15.

Abstract

Two viral nonstructural proteins, p150 and p90, are expressed in rubella virus (RUBV)-infected cells and mediate viral genome replication, presumably using various host machineries. Molecular chaperones are critical host factors for the maintenance of cellular proteostasis, and certain viral proteins use this chaperone system. The RUBV p150 and p90 proteins are generated from a precursor polyprotein, p200, via processing by the protease activity of its p150 region. This processing is essential for RUBV genome replication. Here we show that heat shock protein 90 (HSP90), a molecular chaperone, is an important host factor for RUBV genome replication. The treatment of RUBV-infected cells with the HSP90 inhibitors 17-allylamino-17-desmethoxygeldanamycin (17-AAG) and ganetespib suppressed RUBV genome replication. HSP90α physically interacted with p150, but not p90. Further analyses into the mechanism of action of the HSP90 inhibitors revealed that HSP90 activity contributes to p150 functional integrity and promotes p200 processing. Collectively, our data demonstrate that RUBV p150 is a client of the HSP90 molecular chaperone and that HSP90 functions as a key host factor for RUBV replication. Accumulating evidence indicates that RNA viruses use numerous host factors during replication of their genomes. However, the host factors involved in rubella virus (RUBV) genome replication are largely unknown. In this study, we demonstrate that the HSP90 molecular chaperone is needed for the efficient replication of the RUBV genome. Further, we reveal that HSP90 interacts with RUBV nonstructural protein p150 and its precursor polyprotein, p200. HSP90 contributes to the stability of p150 and the processing of p200 via its protease domain in the p150 region. We conclude that the cellular molecular chaperone HSP90 is a key host factor for functional maturation of nonstructural proteins for RUBV genome replication. These findings provide novel insight into this host-virus interaction.

摘要

两种病毒非结构蛋白,p150 和 p90,在风疹病毒(RUBV)感染的细胞中表达,并介导病毒基因组复制,推测使用各种宿主机制。分子伴侣是维持细胞蛋白稳态的关键宿主因素,某些病毒蛋白利用这种伴侣系统。RUBV p150 和 p90 蛋白是由前体多蛋白 p200 通过其 p150 区域的蛋白酶活性加工产生的。这种加工对于 RUBV 基因组复制是必不可少的。在这里,我们表明热休克蛋白 90(HSP90),一种分子伴侣,是 RUBV 基因组复制的重要宿主因素。用 HSP90 抑制剂 17-烯丙基-17-去甲氧基格尔德霉素(17-AAG)和 ganetespib 处理 RUBV 感染的细胞抑制了 RUBV 基因组复制。HSP90α 与 p150 相互作用,但不与 p90 相互作用。对 HSP90 抑制剂作用机制的进一步分析表明,HSP90 活性有助于 p150 功能完整性并促进 p200 加工。总的来说,我们的数据表明,RUBV p150 是 HSP90 分子伴侣的客户,HSP90 作为 RUBV 复制的关键宿主因素发挥作用。越来越多的证据表明,RNA 病毒在复制其基因组时会利用许多宿主因子。然而,风疹病毒(RUBV)基因组复制所涉及的宿主因子在很大程度上尚不清楚。在这项研究中,我们证明 HSP90 分子伴侣对于 RUBV 基因组的有效复制是必需的。此外,我们揭示 HSP90 与 RUBV 非结构蛋白 p150 及其前体多蛋白 p200 相互作用。HSP90 通过其 p150 区域的蛋白酶结构域促进 p150 的稳定性和 p200 的加工。我们得出结论,细胞分子伴侣 HSP90 是 RUBV 基因组复制中非结构蛋白功能成熟的关键宿主因素。这些发现为这种宿主-病毒相互作用提供了新的见解。

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