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Temporal Viral Genome-Protein Interactions Define Distinct Stages of Productive Herpesviral Infection

机译:时间病毒基因组-蛋白质相互作用定义了生产性疱疹病毒感染的不同阶段

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ABSTRACT Herpesviruses utilize multiple mechanisms to redirect host proteins for use in viral processes and to avoid recognition and repression by the host. To investigate dynamic interactions between herpes simplex virus type 1 (HSV-1) DNA and viral and host proteins throughout infection, we developed an approach to identify proteins that associate with the infecting viral genome from nuclear entry through packaging. To accomplish this, virus stocks were prepared in the presence of ethynyl-modified nucleotides to enable covalent tagging of viral genomes after infection for analysis of viral genome-protein interactions by imaging or affinity purification. Affinity purification was combined with stable isotope labeling of amino acids in cell culture (SILAC) mass spectrometry to enable the distinction between proteins that were brought into the cell by the virus or expressed within the infected cell before or during infection. We found that input viral DNA progressed within 6?h through four temporal stages where the genomes sequentially (i) interacted with intrinsic antiviral and DNA damage response proteins, (ii) underwent a robust transcriptional switch mediated largely by ICP4, (iii) engaged in replication, repair, and continued transcription, and then (iv) transitioned to a more transcriptionally inert state engaging de novo -synthesized viral structural components while maintaining interactions with replication proteins. Using a combination of genetic, imaging, and proteomic approaches, we provide a new and temporally compressed view of the HSV-1 life cycle based on input genome-proteome dynamics. IMPORTANCE Herpesviruses are highly prevalent and ubiquitous human pathogens. Studies of herpesviruses and other viruses have previously been limited by the ability to directly study events that occur on the viral DNA throughout infection. We present a new powerful approach, which allows for the temporal investigation of viral genome-protein interactions at all phases of infection. This work has integrated many results from previous studies with the discovery of novel factors potentially involved in viral infection that may represent new antiviral targets. In addition, the study provides a new view of the HSV-1 life cycle based on genome-proteome dynamics.
机译:摘要疱疹病毒利用多种机制重定向宿主蛋白以用于病毒过程,并避免宿主识别和抑制。为了研究整个感染期间单纯疱疹病毒1型(HSV-1)DNA与病毒和宿主蛋白之间的动态相互作用,我们开发了一种方法来鉴定与从核进入到包装的感染性病毒基因组相关的蛋白质。为此,在乙炔基修饰的核苷酸存在下制备病毒原种,以便在感染后能够对病毒基因组进行共价标记,以通过成像或亲和纯化分析病毒基因组-蛋白质相互作用。亲和纯化与细胞培养(SILAC)质谱中氨基酸的稳定同位素标记相结合,可以区分在病毒感染前或感染过程中由病毒带入细胞或在感染细胞内表达的蛋白质。我们发现,输入的病毒DNA在六个小时内通过四个时间阶段进展,其中四个基因组依次(i)与内在的抗病毒和DNA损伤反应蛋白相互作用,(ii)经历了主要由ICP4介导的强大的转录开关,(iii)复制,修复和继续转录,然后(iv)转变为更具转录惰性的状态,从头参与从头合成的病毒结构成分,同时保持与复制蛋白的相互作用。结合遗传,成像和蛋白质组学方法,我们基于输入基因组-蛋白质组动力学提供了HSV-1生命周期的新的时间压缩视图。重要信息疱疹病毒是高度普遍和普遍存在的人类病原体。疱疹病毒和其他病毒的研究以前一直受到直接研究整个感染过程中病毒DNA上发生事件的能力的限制。我们提出了一种新的强大方法,该方法可用于在感染的所有阶段对病毒基因组-蛋白质相互作用进行时间调查。这项工作综合了先前研究的许多结果,并发现了可能与病毒感染有关的新因子,这些新因子可能代表了新的抗病毒靶标。此外,该研究提供了基于基因组蛋白质组动力学的HSV-1生命周期的新观点。

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