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Phosphoproteomic Analyses Reveal Signaling Pathways That Facilitate Lytic Gammaherpesvirus Replication

机译:磷酸蛋白组学分析揭示了有助于裂解γ-疱疹病毒复制的信号通路

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摘要

Lytic gammaherpesvirus (GHV) replication facilitates the establishment of lifelong latent infection, which places the infected host at risk for numerous cancers. As obligate intracellular parasites, GHVs must control and usurp cellular signaling pathways in order to successfully replicate, disseminate to stable latency reservoirs in the host, and prevent immune-mediated clearance. To facilitate a systems-level understanding of phosphorylation-dependent signaling events directed by GHVs during lytic replication, we utilized label-free quantitative mass spectrometry to interrogate the lytic replication cycle of murine gammaherpesvirus-68 (MHV68). Compared to controls, MHV68 infection regulated by 2-fold or greater ca. 86% of identified phosphopeptides – a regulatory scale not previously observed in phosphoproteomic evaluations of discrete signal-inducing stimuli. Network analyses demonstrated that the infection-associated induction or repression of specific cellular proteins globally altered the flow of information through the host phosphoprotein network, yielding major changes to functional protein clusters and ontologically associated proteins. A series of orthogonal bioinformatics analyses revealed that MAPK and CDK-related signaling events were overrepresented in the infection-associated phosphoproteome and identified 155 host proteins, such as the transcription factor c-Jun, as putative downstream targets. Importantly, functional tests of bioinformatics-based predictions confirmed ERK1/2 and CDK1/2 as kinases that facilitate MHV68 replication and also demonstrated the importance of c-Jun. Finally, a transposon-mutant virus screen identified the MHV68 cyclin D ortholog as a viral protein that contributes to the prominent MAPK/CDK signature of the infection-associated phosphoproteome. Together, these analyses enhance an understanding of how GHVs reorganize and usurp intracellular signaling networks to facilitate infection and replication.
机译:溶血性γ疱疹病毒(GHV)复制促进了终身潜伏感染的建立,这使被感染的宿主面临多种癌症的风险。作为专性的细胞内寄生虫,GHV必须控制和篡改细胞信号通路,以便成功复制,传播至宿主中稳定的潜伏期并防止免疫介导的清除。为了促进系统水平的理解,在裂解复制过程中,GHV指导的磷酸化依赖性信号转导事件,我们利用了无标记的定量质谱技术来询问鼠γ疱疹病毒68(MHV68)的裂解复制周期。与对照组相比,MHV68感染受2倍或更大的调控。 86%的已鉴定磷酸肽–以前在离散信号诱导刺激的磷酸蛋白质组学评估中未观察到的调节规模。网络分析表明,与感染相关的特定细胞蛋白的诱导或抑制在全球范围内改变了通过宿主磷蛋白网络的信息流,对功能蛋白簇和本体相关蛋白产生了重大变化。一系列正交生物信息学分析显示,MAPK和CDK相关的信号转导事件在感染相关的磷酸化蛋白质组中被过度表达,并鉴定了155种宿主蛋白​​,例如转录因子c-Jun,作为推测的下游靶标。重要的是,基于生物信息学的预测的功能测试证实了ERK1 / 2和CDK1 / 2是促进MHV68复制的激酶,也证明了c-Jun的重要性。最后,转座子突变病毒筛选将MHV68细胞周期蛋白D直向同源物鉴定为一种病毒蛋白,该蛋白有助于感染相关磷酸化蛋白质组的突出MAPK / CDK标志。在一起,这些分析加深了对GHV如何重组和篡夺细胞内信号传导网络以促进感染和复制的理解。

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