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蛋白原型分析揭示了痘病毒组装和转录能力所必需的病毒信号网络。

Proteotype profiling unmasks a viral signalling network essential for poxvirus assembly and transcriptional competence.

机构信息

Institute of Molecular Systems Biology, Department of Biology, ETH Zurich, Zurich, Switzerland.

Biomedical Proteomics Platform, Department of Health Sciences and Technology, ETH Zurich, Zurich, Switzerland.

出版信息

Nat Microbiol. 2018 May;3(5):588-599. doi: 10.1038/s41564-018-0142-6. Epub 2018 Apr 9.

Abstract

To orchestrate context-dependent signalling programmes, poxviruses encode two dual-specificity enzymes, the F10 kinase and the H1 phosphatase. These signalling mediators are essential for poxvirus production, yet their substrate profiles and systems-level functions remain enigmatic. Using a phosphoproteomic screen of cells infected with wild-type, F10 and H1 mutant vaccinia viruses, we systematically defined the viral signalling network controlled by these enzymes. Quantitative cross-comparison revealed 33 F10 and/or H1 phosphosites within 17 viral proteins. Using this proteotype dataset to inform genotype-phenotype relationships, we found that H1-deficient virions harbour a hidden hypercleavage phenotype driven by reversible phosphorylation of the virus protease I7 (S134). Quantitative phosphoproteomic profiling further revealed that the phosphorylation-dependent activity of the viral early transcription factor, A7 (Y367), underlies the transcription-deficient phenotype of H1 mutant virions. Together, these results highlight the utility of combining quantitative proteotype screens with mutant viruses to uncover proteotype-phenotype-genotype relationships that are masked by classical genetic studies.

摘要

为了协调依赖上下文的信号转导程序,痘病毒编码了两种双特异性酶,即 F10 激酶和 H1 磷酸酶。这些信号转导介质对于痘病毒的产生是必不可少的,但它们的底物谱和系统水平的功能仍然是个谜。我们使用野生型、F10 和 H1 突变痘苗病毒感染细胞的磷酸蛋白质组学筛选,系统地定义了这些酶控制的病毒信号转导网络。定量交叉比较显示,在 17 种病毒蛋白中存在 33 个 F10 和/或 H1 磷酸化位点。利用这个蛋白质组数据集来解释基因型-表型关系,我们发现 H1 缺失的病毒粒子具有隐藏的超切割表型,由病毒蛋白酶 I7(S134)的可逆磷酸化驱动。定量磷酸蛋白质组学分析进一步表明,病毒早期转录因子 A7(Y367)的磷酸化依赖性活性是 H1 突变病毒粒子转录缺陷表型的基础。总之,这些结果突出了将定量蛋白质组筛选与突变病毒相结合,以揭示经典遗传研究掩盖的蛋白质组-表型-基因型关系的实用性。

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