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Protein interactions and consensus clustering analysis uncover insights into herpesvirus virion structure and function relationships

机译:蛋白质相互作用和共识聚类分析揭示了疱疹病毒颗粒结构和功能关系的见解

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摘要

Infections with human herpesviruses are ubiquitous and a public health concern worldwide. Current treatments reduce the severity of some symptoms associated to herpetic infections but neither remove the viral reservoir from the infected host nor protect from the recurrent symptom outbreaks that characterise herpetic infections. The difficulty in therapeutically tackling these viral systems stems in part from their remarkably large proteomes and the complex networks of physical and functional associations that they tailor. This study presents our efforts to unravel the complexity of the interactome of herpes simplex virus type 1 (HSV1), the prototypical herpesvirus species. Inspired by our previous work, we present an improved and more integrative computational pipeline for the protein–protein interaction (PPI) network reconstruction in HSV1, together with a newly developed consensus clustering framework, which allowed us to extend the analysis beyond binary physical interactions and revealed a system-level layout of higher-order functional associations in the virion proteome. Additionally, the analysis provided new functional annotation for the currently undercharacterised protein pUS10. In-depth bioinformatics sequence analysis unravelled structural features in pUS10 reminiscent of those observed in some capsid-associated proteins in tailed bacteriophages, with which herpesviruses are believed to share a common ancestry. Using immunoaffinity purification (IP)–mass spectrometry (MS), we obtained additional support for our bioinformatically predicted interaction between pUS10 and the inner tegument protein pUL37, which binds cytosolic capsids, contributing to initial tegumentation and eventually virion maturation. In summary, this study unveils new, to our knowledge, insights at both the system and molecular levels that can help us better understand the complexity behind herpesvirus infections.
机译:人类疱疹病毒的感染是普遍存在的,并且是世界范围内的公共卫生问题。当前的治疗降低了一些与疱疹感染有关的症状的严重性,但是既没有从受感染的宿主中除去病毒库,也没有保护免受以疱疹感染为特征的复发性症状暴发。在治疗上应对这些病毒系统的困难部分归因于它们非常庞大的蛋白质组以及他们定制的物理和功能关联的复杂网络。这项研究提出了我们为弄清单纯疱疹病毒1型(原型疱疹病毒种类)的相互作用组的复杂性所做的努力。受先前工作的启发,我们提出了一种改进的,更集成的计算管道,用于HSV1中的蛋白质-蛋白质相互作用(PPI)网络重建,以及新开发的共识聚类框架,使我们能够将分析范围扩展到二进制物理相互作用和揭示了病毒体蛋白质组中高级功能关联的系统级布局。此外,该分析为当前表征不足的蛋白pUS10提供了新的功能注释。深入的生物信息学序列分析揭示了pUS10中的结构特征,让人联想到在尾巴噬菌体中与衣壳相关的蛋白质中观察到的结构特征,据信疱疹病毒与这些蛋白具有共同的血统。使用免疫亲和纯化(IP)-质谱(MS),我们获得了pUS10与内在被膜蛋白pUL37之间的生物信息学预测相互作用的额外支持,内在被膜蛋白pUL37结合了胞质衣壳,有助于最初的被膜化和最终病毒体的成熟。总而言之,这项研究就我们所掌握的知识,在系统和分子水平上揭示了新的见解,可以帮助我们更好地了解疱疹病毒感染背后的复杂性。

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