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An Integrated Approach to Elucidate the Intra-Viral and Viral-Cellular Protein Interaction Networks of a Gamma-Herpesvirus

机译:一种阐明γ-疱疹病毒的病毒内和病毒细胞蛋白相互作用网络的综合方法

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摘要

Genome-wide yeast two-hybrid (Y2H) screens were conducted to elucidate the molecular functions of open reading frames (ORFs) encoded by murine γ-herpesvirus 68 (MHV-68). A library of 84 MHV-68 genes and gene fragments was generated in a Gateway entry plasmid and transferred to Y2H vectors. All possible pair-wise interactions between viral proteins were tested in the Y2H assay, resulting in the identification of 23 intra-viral protein-protein interactions (PPIs). Seventy percent of the interactions between viral proteins were confirmed by co-immunoprecipitation experiments. To systematically investigate virus-cellular protein interactions, the MHV-68 Y2H constructs were screened against a cellular cDNA library, yielding 243 viral-cellular PPIs involving 197 distinct cellar proteins. Network analyses indicated that cellular proteins targeted by MHV-68 had more partners in the cellular PPI network and were located closer to each other than expected by chance. Taking advantage of this observation, we scored the cellular proteins based on their network distances from other MHV-68-interacting proteins and segregated them into high (Y2H-HP) and low priorityot-scored (Y2H-LP/NS) groups. Significantly more genes from Y2H-HP altered MHV-68 replication when their expression was inhibited with siRNAs (53% of genes from Y2H-HP, 21% of genes from Y2H-LP/NS, and 16% of genes randomly chosen from the human PPI network; p<0.05). Enriched Gene Ontology (GO) terms in the Y2H-HP group included regulation of apoptosis, protein kinase cascade, post-translational protein modification, transcription from RNA polymerase II promoter, and IκB kinase/NFκB cascade. Functional validation assays indicated that PCBP1, which interacted with MHV-68 ORF34, may be involved in regulating late virus gene expression in a manner consistent with the effects of its viral interacting partner. Our study integrated Y2H screening with multiple functional validation approaches to create γ-herpes viral-viral and viral-cellular protein interaction networks.
机译:进行全基因组酵母双杂交(Y2H)筛选,以阐明由鼠γ疱疹病毒68(MHV-68)编码的开放阅读框(ORF)的分子功能。在Gateway入口质粒中生成了84个MHV-68基因和基因片段的文库,并将其转移到Y2H载体中。在Y2H分析中测试了病毒蛋白之间所有可能的成对相互作用,从而鉴定出23种病毒内蛋白-蛋白相互作用(PPI)。共同免疫沉淀实验证实了病毒蛋白之间相互作用的百分之七十。为了系统地研究病毒与细胞蛋白的相互作用,针对细胞cDNA文库筛选了MHV-68 Y2H构建体,产生了243个涉及197个不同细胞蛋白的病毒细胞PPI。网络分析表明,MHV-68靶向的细胞蛋白在细胞PPI网络中具有更多的伴侣,并且彼此之间的位置比偶然预期的更近。利用这一观察结果,我们根据细胞蛋白与其他与MHV-68相互作用的蛋白之间的网络距离对细胞蛋白进行评分,并将其分为高(Y2H-HP)和低优先级/未评分(Y2H-LP / NS)组。当被siRNA抑制时,来自Y2H-HP的基因显着改变了MHV-68的复制(来自Y2H-HP的基因占53%,来自Y2H-LP / NS的基因占21%,从人中随机选择的基因占16% PPI网络; p <0.05)。 Y2H-HP组中的丰富基因本体论(GO)术语包括凋亡调控,蛋白激酶级联,翻译后蛋白修饰,RNA聚合酶II启动子转录和IκB激酶/NFκB级联。功能验证分析表明,与MHV-68 ORF34相互作用的PCBP1可能以与其病毒相互作用伴侣的作用一致的方式参与调节晚期病毒基因的表达。我们的研究将Y2H筛查与多种功能验证方法相结合,以创建γ疱疹病毒-病毒和病毒-细胞蛋白相互作用网络。

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