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Large Scale Genotype Comparison of Human Papillomavirus E2-Host Interaction Networks Provides New Insights for E2 Molecular Functions

机译:人类乳头瘤病毒E2宿主相互作用网络的大规模基因型比较为E2分子功能提供了新见解

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摘要

Human Papillomaviruses (HPV) cause widespread infections in humans, resulting in latent infections or diseases ranging from benign hyperplasia to cancers. HPV-induced pathologies result from complex interplays between viral proteins and the host proteome. Given the major public health concern due to HPV-associated cancers, most studies have focused on the early proteins expressed by HPV genotypes with high oncogenic potential (designated high-risk HPV or HR-HPV). To advance the global understanding of HPV pathogenesis, we mapped the virus/host interaction networks of the E2 regulatory protein from 12 genotypes representative of the range of HPV pathogenicity. Large-scale identification of E2-interaction partners was performed by yeast two-hybrid screenings of a HaCaT cDNA library. Based on a high-confidence scoring scheme, a subset of these partners was then validated for pair-wise interaction in mammalian cells with the whole range of the 12 E2 proteins, allowing a comparative interaction analysis. Hierarchical clustering of E2-host interaction profiles mostly recapitulated HPV phylogeny and provides clues to the involvement of E2 in HPV infection. A set of cellular proteins could thus be identified discriminating, among the mucosal HPV, E2 proteins of HR-HPV 16 or 18 from the non-oncogenic genital HPV. The study of the interaction networks revealed a preferential hijacking of highly connected cellular proteins and the targeting of several functional families. These include transcription regulation, regulation of apoptosis, RNA processing, ubiquitination and intracellular trafficking. The present work provides an overview of E2 biological functions across multiple HPV genotypes.
机译:人乳头瘤病毒(HPV)引起人类广泛感染,导致潜伏感染或疾病,从良性增生到癌症。 HPV诱导的病理是病毒蛋白与宿主蛋白质组之间复杂的相互作用所致。鉴于与HPV相关的癌症引起的主要公共卫生问题,大多数研究都集中在具有高致癌潜力的HPV基因型(称为高风险HPV或HR-HPV)表达的早期蛋白质上。为了增进对HPV发病机理的全球了解,我们从代表HPV致病性范围的12个基因型中绘制了E2调节蛋白的病毒/宿主相互作用网络。 E2相互作用伙伴的大规模鉴定是通过HaCaT cDNA文库的酵母双杂交筛选进行的。基于高可信度评分方案,然后验证了这些伙伴中的一部分在哺乳动物细胞中与全部12种E2蛋白的成对相互作用,从而进行了比较性相互作用分析。 E2宿主相互作用谱的分层聚类主要概括了HPV的系统发育,并为E2参与HPV感染提供了线索。因此,可以鉴定出一组细胞蛋白,以在粘膜HPV中区别非致癌性生殖器HPV的HR-HPV 16或18的E2蛋白。相互作用网络的研究揭示了高度连接的细胞蛋白的优先劫持和几个功能家族的目标。这些包括转录调控,细胞凋亡调控,RNA加工,泛素化和细胞内运输。本工作概述了跨多种HPV基因型的E2生物学功能。

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