诱导型HIV-1模型的定量时间病毒组学揭示了与病毒蛋白R(Vpr)相关的全球宿主靶点和磷酸化动力学。

Quantitative Temporal Viromics of an Inducible HIV-1 Model Yields Insight to Global Host Targets and Phospho-Dynamics Associated with Protein Vpr.

作者信息

Lapek John D, Lewinski Mary K, Wozniak Jacob M, Guatelli John, Gonzalez David J

机构信息

From the ‡Department of Pharmacology.

§Skaggs School of Pharmacy and Pharmaceutical Sciences.

出版信息

Mol Cell Proteomics. 2017 Aug;16(8):1447-1461. doi: 10.1074/mcp.M116.066019. Epub 2017 Jun 12.

Abstract

The mechanisms by which human immunodeficiency virus (HIV) circumvents and coopts cellular machinery to replicate and persist in cells are not fully understood. HIV accessory proteins play key roles in the HIV life cycle by altering host pathways that are often dependent on post-translational modifications (PTMs). Thus, the identification of HIV accessory protein host targets and their PTM status is critical to fully understand how HIV invades, avoids detection and replicates to spread infection. To date, a comprehensive characterization of HIV accessory protein host targets and modulation of their PTM status does not exist. The significant gap in knowledge regarding the identity and PTMs of HIV host targets is due, in part, to technological limitations. Here, we applied current mass spectrometry techniques to define mechanisms of viral protein action by identifying host proteins whose abundance is affected by the accessory protein Vpr and the corresponding modulation of down-stream signaling pathways, specifically those regulated by phosphorylation. By utilizing a novel, inducible HIV-1 CD4+ T-cell model system expressing either the wild type or a negative viral genome, we overcame challenges associated with synchronization and infection-levels present in other models. We report identification and abundance dynamics of over 7000 proteins and 28,000 phospho-peptides. Consistent with Vpr's ability to impair cell-cycle progression, we observed Vpr-mediated modulation of spindle and centromere proteins, as well as Aurora kinase A and cyclin-dependent kinase 4 (CDK4). Unexpectedly, we observed evidence of Vpr-mediated modulation of the activity of serine/arginine-rich protein-specific kinases (SRPKs), suggesting a possible role for Vpr in the regulation of RNA splicing. This study presents a new experimental system and provides a data-resource that lays the foundation for validating host proteins and phosphorylation-pathways affected by HIV-1 and its accessory protein Vpr.

摘要

人类免疫缺陷病毒(HIV)规避并利用细胞机制在细胞中复制和持续存在的机制尚未完全明确。HIV辅助蛋白通过改变通常依赖于翻译后修饰(PTM)的宿主途径,在HIV生命周期中发挥关键作用。因此,确定HIV辅助蛋白的宿主靶点及其PTM状态对于全面了解HIV如何入侵、逃避检测以及复制以传播感染至关重要。迄今为止,尚无关于HIV辅助蛋白宿主靶点及其PTM状态调节的全面表征。关于HIV宿主靶点的身份和PTM的知识存在重大差距,部分原因是技术限制。在此,我们应用当前的质谱技术,通过鉴定其丰度受辅助蛋白Vpr影响的宿主蛋白以及下游信号通路的相应调节,特别是那些受磷酸化调节的通路,来确定病毒蛋白的作用机制。通过利用一种新型的、可诱导的表达野生型或阴性病毒基因组的HIV-1 CD4 + T细胞模型系统,我们克服了与其他模型中存在的同步化和感染水平相关的挑战。我们报告了7000多种蛋白质和28000种磷酸化肽段的鉴定和丰度动态变化。与Vpr损害细胞周期进程的能力一致,我们观察到Vpr介导的纺锤体和着丝粒蛋白以及极光激酶A和细胞周期蛋白依赖性激酶4(CDK4)的调节。出乎意料的是,我们观察到Vpr介导的富含丝氨酸/精氨酸蛋白特异性激酶(SRPKs)活性调节的证据,这表明Vpr在RNA剪接调节中可能发挥作用。本研究提出了一种新的实验系统,并提供了一个数据资源,为验证受HIV-1及其辅助蛋白Vpr影响的宿主蛋白和磷酸化途径奠定了基础。

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