Oxford Kristie L, Wendler Jason P, McDermott Jason E, White Iii Richard A, Powell Joshua D, Jacobs Jon M, Adkins Joshua N, Waters Katrina M
a Biological Sciences Division , Pacific Northwest National Laboratory , Richland , WA , USA.
b Signature Sciences and Technology Division , Pacific Northwest National Laboratory , Richland , WA , USA.
Expert Rev Proteomics. 2016 Jun;13(6):579-91. doi: 10.1080/14789450.2016.1184091. Epub 2016 May 26.
Advances in mass spectrometry-based proteomic technologies are enhancing studies of viral pathogenesis. Identification and quantification of host and viral proteins and modifications in cells and extracellular fluids during infection provides useful information about pathogenesis, and will be critical for directing clinical interventions and diagnostics.
Herein we review and discuss a broad range of global proteomic studies conducted during viral infection, including those of cellular responses, protein modifications, virion packaging, and serum proteomics. We focus on viruses that impact human health and focus on experimental designs that reveal disease processes and surrogate markers. Expert commentary: Global proteomics is an important component of systems-level studies that aim to define how the interaction of humans and viruses leads to disease. Viral-community resource centers and strategies from other fields (e.g., cancer) will facilitate data sharing and platform-integration for systems-level analyses, and should provide recommended standards and assays for experimental designs and validation.
基于质谱的蛋白质组学技术的进步正在加强对病毒发病机制的研究。在感染过程中对宿主和病毒蛋白以及细胞和细胞外液中的修饰进行鉴定和定量,可为发病机制提供有用信息,对于指导临床干预和诊断至关重要。
在此,我们回顾并讨论了在病毒感染期间进行的广泛的全蛋白质组学研究,包括细胞反应、蛋白质修饰、病毒粒子包装和血清蛋白质组学等研究。我们重点关注影响人类健康的病毒,并着重于揭示疾病过程和替代标志物的实验设计。专家评论:全蛋白质组学是系统水平研究的重要组成部分,旨在确定人类与病毒的相互作用如何导致疾病。病毒群落资源中心以及其他领域(如癌症领域)的策略将促进系统水平分析的数据共享和平台整合,并应为实验设计和验证提供推荐标准和检测方法。