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Global ubiquitination analysis reveals extensive modification and proteasomal degradation of cowpox virus proteins, but preservation of viral cores

机译:全球泛素化分析揭示了牛痘病毒蛋白的广泛修饰和蛋白酶体降解,但保留了病毒核心

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摘要

The emergence of Variola virus-like viruses by natural evolution of zoonotic Orthopoxviruses, like Cowpox virus (CPXV), is a global health threat. The proteasome is essential for poxvirus replication, making the viral components interacting with the ubiquitin-proteasome system attractive antiviral targets. We show that proteasome inhibition impairs CPXV replication by prevention of uncoating, suggesting that uncoating is mediated by proteasomal degradation of viral core proteins. Although Orthopoxvirus particles contain considerable amounts of ubiquitin, distinct modification sites are largely unknown. Therefore, for the first time, we analyzed globally ubiquitination sites in CPXV mature virion proteins using LC-MS/MS. Identification of 137 conserved sites in 54 viral proteins among five CPXV strains revealed extensive ubiquitination of structural core proteins. Moreover, since virions contained primarily K48-linked polyubiquitin, we hypothesized that core proteins are modified accordingly. However, quantitative analysis of ubiquitinated CPXV proteins early in infection showed no proteasomal degradation of core proteins. Instead, our data indicate that the recently suggested proteasomal regulation of the uncoating factor E5 is a prerequisite for uncoating. Expanding our understanding of poxvirus uncoating and elucidating a multitude of novel ubiquitination sites in poxvirus proteins, the present study verifies the major biological significance of ubiquitin in poxvirus infection.
机译:人畜共患的正痘病毒(如牛痘病毒(CPXV))的自然进化产生了天花病毒样病毒,这是全球性的健康威胁。蛋白酶体是痘病毒复制所必需的,使病毒成分与泛素-蛋白酶体系统相互作用成为有吸引力的抗病毒靶标。我们表明,蛋白酶体抑制通过防止脱壳而损害CPXV复制,表明脱壳是由病毒核心蛋白的蛋白酶体降解介导的。尽管正痘病毒颗粒含有大量的泛素,但很大程度上尚不清楚独特的修饰位点。因此,我们首次使用LC-MS / MS分析了CPXV成熟病毒体蛋白中的全球泛素化位点。在五个CPXV菌株中54个病毒蛋白中137个保守位点的鉴定揭示了结构核心蛋白的广泛泛素化。此外,由于病毒体主要包含K48连接的聚泛素,因此我们假设核心蛋白会相应地被修饰。但是,在感染初期对泛素化的CPXV蛋白进行定量分析表明,核心蛋白没有蛋白酶体降解。相反,我们的数据表明,最近建议的脱膜因子E5的蛋白酶体调节是脱膜的先决条件。扩展我们对痘病毒脱膜的理解并阐明痘病毒蛋白中的许多新的泛素化位点,本研究验证了遍在蛋白在痘病毒感染中的主要生物学意义。

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