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Interactome Analysis Of The Human Respiratory Syncytial Virus Rna Polymerase Complex Identifies Protein Chaperones As Important Cofactors That Promote L-protein Stability And Rna Synthesis

机译:人类呼吸道合胞病毒Rna聚合酶复合物的相互作用分析确定蛋白质伴侣是促进L蛋白稳定性和Rna合成的重要辅助因子。

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摘要

The human respiratory syncytial virus (HRSV) core viral RNA polymerase comprises the large polymerase protein (L) and its cofactor, the phosphoprotein (P), which associate with the viral ribonucleoprotein complex to replicate the genome and, together with the M2-1 protein, transcribe viral mRNAs. While cellular proteins have long been proposed to be involved in the synthesis of HRSV RNA by associating with the polymerase complex, their characterization has been hindered by the difficulty of purifying the viral polymerase from mammalian cell culture. In this study, enhanced green fluorescent protein (EGFP)-tagged L-and P-protein expression was coupled with high-affinity anti-GFP antibody-based immunoprecipitation and quantitative proteomics to identify cellular proteins that interacted with either the L-or the P-proteins when expressed as part of a biologically active viral RNP. Several core groups of cellular proteins were identified that interacted with each viral protein including, in both cases, protein chaperones. Ablation of chaperone activity by using small-molecule inhibitors confirmed previously reported studies which suggested that this class of proteins acted as positive viral factors. Inhibition of HSP90 chaperone function in the current study showed that HSP90 is critical for L-protein function and stability, whether in the presence or absence of the P-protein. Inhibition studies suggested that HSP70 also disrupts virus biology and might help the polymerase remodel the nucleocapsid to allow RNA synthesis to occur efficiently. This indicated a proviral role for protein chaperones in HRSV replication and demonstrates that the function of cellular proteins can be targeted as potential therapeutics to disrupt virus replication. IMPORTANCE Human respiratory syncytial virus (HRSV) represents a major health care and economic burden, being the main cause of severe respiratory infections in infants worldwide. No vaccine or effective therapy is available. This study focused on identifying those cellular proteins that potentially interact specifically with the viral proteins that are central to virus replication and transcription, with a view to providing potential targets for the development of a specific, transient therapeutic which disrupts virus biology but prevents the emergence of resistance, while maintaining cell viability. In particular, protein chaperones (heat shock proteins 70 and 90), which aid protein folding and function, were identified. The mechanism by which these chaperones contribute to virus biology was tested, and this study demonstrates to the field that cellular protein chaperones may be required for maintaining the correct folding and therefore functionality of specific proteins within the virus replication complex.
机译:人呼吸道合胞病毒(HRSV)核心病毒RNA聚合酶包含大聚合酶蛋白(L)及其辅因子磷蛋白(P),后者与病毒核糖核蛋白复合物结合以复制基因组,并与M2-1蛋白一起,转录病毒mRNA。尽管长期以来一直提出细胞蛋白通过与聚合酶复合物结合而参与HRSV RNA的合成,但由于难以从哺乳动物细胞培养物中纯化病毒聚合酶而阻碍了它们的表征。在这项研究中,将增强的绿色荧光蛋白(EGFP)标记的L和P蛋白表达与基于高亲和力抗GFP抗体的免疫沉淀和定量蛋白质组学相结合,以鉴定与L或P相互作用的细胞蛋白-蛋白作为具有生物活性的病毒RNP的一部分表达时。鉴定了与每种病毒蛋白相互作用的细胞蛋白的几个核心组,在两种情况下都包括蛋白伴侣。通过使用小分子抑制剂消除伴侣蛋白活性证实了先前报道的研究,这些研究表明这类蛋白质可作为阳性病毒因子。当前研究中对HSP90伴侣功能的抑制表明,无论是否存在P蛋白,HSP90对L蛋白的功能和稳定性都至关重要。抑制研究表明,HSP70还可以破坏病毒生物学,并可能有助于聚合酶重塑核衣壳,从而有效地进行RNA合成。这表明蛋白伴侣蛋白在HRSV复制中具有前病毒作用,并表明细胞蛋白的功能可以作为破坏病毒复制的潜在疗法而靶向。重要信息人类呼吸道合胞病毒(HRSV)代表着主要的医疗保健和经济负担,是全世界婴儿严重呼吸道感染的主要原因。没有疫苗或有效的治疗方法。这项研究的重点是鉴定那些可能与病毒复制和转录至关重要的病毒蛋白发生特异性相互作用的细胞蛋白,以期为开发一种特定的,短暂的治疗药物提供潜在的靶标,这种治疗药物可以破坏病毒的生物学功能,但可以防止病毒的出现。抗性,同时保持细胞活力。特别是,鉴定了有助于蛋白折叠和功能的蛋白伴侣(热激蛋白70和90)。测试了这些分子伴侣对病毒生物学的贡献的机制,并且该研究向该领域证明了可能需要细胞蛋白分子伴侣来维持正确的折叠,从而维持病毒复制复合物中特定蛋白的功能。

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