首页> 美国卫生研究院文献>Journal of Virology >Protein interactions in the herpes simplex virus type 1 VP16-induced complex: VP16 peptide inhibition and mutational analysis of host cell factor requirements.
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Protein interactions in the herpes simplex virus type 1 VP16-induced complex: VP16 peptide inhibition and mutational analysis of host cell factor requirements.

机译:1型单纯疱疹病毒VP16诱导的复合物中的蛋白质相互作用:VP16肽抑制和宿主细胞因子要求的突变分析。

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摘要

The herpes simplex virus VP16 protein functions as a potent transcriptional activator and targets DNA sites with the consensus TAATGARAT present in all the viral immediate-early gene promoters. To do so, VP16 directs assembly of a multiprotein complex involving two cellular proteins, host cell factor (HCF) and the Oct-1 DNA-binding transcription factor. To investigate the importance of specific protein-protein interactions to formation of this VP16-induced complex (VIC), we used oligopeptides to prevent VIC assembly. Linear and cyclic peptides corresponding to a region of VP16 previously implicated in complex formation were potent inhibitors of VIC assembly. To further characterize the protein interactions involved, we cloned a human cDNA encoding the minimal VP16 interaction domain of HCF, containing amino acids 1 to 380 [HCF (1-380)]. The REHAYS-based peptides active in preventing VIC assembly were found to specifically block binding of VP16 to HCF (1-380), without affecting VP16-Oct-1 binding. The inhibitory activity of these VP16 peptides was strictly sequence specific for the EHAY residues. Site-directed mutagenesis of the HCF (1-380) domain revealed residues E102 and K105 to be critical determinants in support of VIC formation. Alteration of a single residue in HCF, K105, was shown to virtually abolish complex assembly. Interestingly however, none of the HCF mutants that were impaired in their ability to support complex formation exhibited defects in direct VP16 binding, supporting loss of function at a higher order in complex assembly.
机译:单纯疱疹病毒VP16蛋白起着有效的转录激活剂的作用,并以所有病毒即早基因启动子中共有的TAATGARAT靶向DNA位点。为此,VP16指导涉及两个细胞蛋白(宿主细胞因子(HCF)和Oct-1 DNA结合转录因子)的多蛋白复合物的组装。为了研究特定蛋白质-蛋白质相互作用对此VP16诱导的复合物(VIC)形成的重要性,我们使用了寡肽来防止VIC组装。先前与复合物形成有关的对应于VP16区域的线性和环状肽是VIC组装的有效抑制剂。为了进一步表征涉及的蛋白质相互作用,我们克隆了编码HCF最小VP16相互作用域的人cDNA,该域包含1至380个氨基酸[HCF(1-380)]。发现在防止VIC组装中有效的基于REHAYS的肽可特异性阻断VP16与HCF的结合(1-380),而不会影响VP16-Oct-1的结合。这些VP16肽的抑制活性严格针对EHAY残基。 HCF(1-380)域的定点诱变表明,残基E102和K105是支持VIC形成的关键决定因素。结果表明,HCF K105中单个残基的改变实际上消除了复杂的装配。然而,有趣的是,在支持复合物形成能力上受损的HCF突变体均未在直接VP16结合中表现出缺陷,从而支持了复杂装配中更高级别的功能丧失。

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