School of Medicine, Institute of Virology, Technical University of Munich, 81675 Munich, Germany.
German Center for Infection Research (DZIF), Munich Partner Site, 80538 Munich, Germany.
Viruses. 2020 Oct 21;12(10):1196. doi: 10.3390/v12101196.
Viruses pose substantial challenges for society, economy, healthcare systems, and research. Their distinctive pathologies are based on specific interactions with cellular factors. In order to develop new antiviral treatments, it is of central importance to understand how viruses interact with their host and how infected cells react to the virus on a molecular level. Invading viruses are commonly sensed by components of the innate immune system, which is composed of a highly effective yet complex network of proteins that, in most cases, mediate efficient virus inhibition. Central to this process is the activity of interferons and other cytokines that coordinate the antiviral response. So far, numerous methods have been used to identify how viruses interact with cellular processes and revealed that the innate immune response is highly complex and involves interferon-stimulated genes and their binding partners as functional factors. Novel approaches and careful experimental design, combined with large-scale, high-throughput methods and cutting-edge analysis pipelines, have to be utilized to delineate the antiviral innate immune landscape at a global level. In this review, we describe different currently used screening approaches, how they contributed to our knowledge on virus-host interactions, and essential considerations that have to be taken into account when planning such experiments.
病毒对社会、经济、医疗体系和研究构成了重大挑战。它们独特的病理学基于与细胞因子的特定相互作用。为了开发新的抗病毒治疗方法,了解病毒如何与其宿主相互作用以及感染细胞如何在分子水平上对病毒做出反应至关重要。入侵的病毒通常被先天免疫系统的成分所感知,先天免疫系统由一个高度有效的、复杂的蛋白质网络组成,在大多数情况下,该网络介导有效的病毒抑制。这一过程的核心是干扰素和其他细胞因子的活性,它们协调抗病毒反应。到目前为止,已经使用了许多方法来确定病毒如何与细胞过程相互作用,并揭示先天免疫反应非常复杂,涉及干扰素刺激基因及其结合伙伴作为功能因素。需要利用新的方法和精心的实验设计,结合大规模、高通量的方法和前沿的分析管道,在全球范围内描绘抗病毒先天免疫图谱。在这篇综述中,我们描述了目前使用的不同筛选方法,它们如何促进我们对病毒-宿主相互作用的认识,以及在规划此类实验时必须考虑的重要注意事项。