Leroy Baptiste, Gillet Laurent, Vanderplasschen Alain, Wattiez Ruddy
Laboratory of Proteomic and Microbiology, Research Institute of Biosciences, University of MONS, 4000 Mons, Belgium.
Immunology-Vaccinology, Department of Infectious and Parasitic Diseases, Fundamental and Applied Research for Animals and Health, Faculty of Veterinary Medicine, University of Liege, 4000 Liege, Belgium.
Viruses. 2016 Feb 12;8(2):50. doi: 10.3390/v8020050.
Herpesviruses are highly prevalent viruses associated with numerous pathologies both in animal and human populations. Until now, most of the strategies used to prevent or to cure these infections have been unsuccessful because these viruses have developed numerous immune evasion mechanisms. Therefore, a better understanding of their complex lifecycle is needed. In particular, while the genome of numerous herpesviruses has been sequenced, the exact composition of virions remains unknown for most of them. Mass spectrometry has recently emerged as a central method and has permitted fundamental discoveries in virology. Here, we review mass spectrometry-based approaches that have recently allowed a better understanding of the composition of the herpesvirus virion. In particular, we describe strategies commonly used for proper sample preparation and fractionation to allow protein localization inside the particle but also to avoid contamination by nonstructural proteins. A collection of other important data regarding post-translational modifications or the relative abundance of structural proteins is also described. This review also discusses the poorly studied importance of host proteins in herpesvirus structural proteins and the necessity to develop a quantitative workflow to better understand the dynamics of the structural proteome. In the future, we hope that this collaborative effort will assist in the development of new strategies to fight these infections.
疱疹病毒是高度流行的病毒,与动物和人类群体中的多种病理状况相关。到目前为止,大多数用于预防或治疗这些感染的策略都未成功,因为这些病毒已经发展出多种免疫逃避机制。因此,需要更好地了解它们复杂的生命周期。特别是,虽然许多疱疹病毒的基因组已被测序,但它们中大多数病毒粒子的确切组成仍然未知。质谱分析法最近已成为核心方法,并在病毒学领域带来了重要发现。在此,我们综述了基于质谱分析的方法,这些方法最近使人们对疱疹病毒粒子的组成有了更好的理解。特别是,我们描述了通常用于适当样品制备和分级分离的策略,以便确定蛋白质在病毒粒子内的定位,同时避免非结构蛋白的污染。还介绍了有关翻译后修饰或结构蛋白相对丰度的其他重要数据。本综述还讨论了宿主蛋白在疱疹病毒结构蛋白中尚未得到充分研究的重要性,以及开发定量工作流程以更好地理解结构蛋白质组动态的必要性。未来,我们希望这种合作努力将有助于制定对抗这些感染的新策略。