首页> 外文期刊>Journal of molecular recognition: JMR >Surface plasmon resonance analysis of the binding of high-risk mucosal HPV E6 oncoproteins to the PDZ1 domain of the tight junction protein MAGI-1
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Surface plasmon resonance analysis of the binding of high-risk mucosal HPV E6 oncoproteins to the PDZ1 domain of the tight junction protein MAGI-1

机译:高危粘膜HPV E6癌蛋白与紧密连接蛋白MAGI-1的PDZ1结构域结合的表面等离子体共振分析

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The E6 oncoproteins from high-risk mucosal human papillomavirus (HPV) induce cervical cancer via two major activities, the binding and the degradation of the p53 protein and PDZ domain-containing proteins. Human MAGI-1 is a multi-PDZ domain protein implicated into protein complex assembly at cell-cell contacts. High-risk mucosal HPV E6 proteins interact with the PDZ1 domain of MAGI-1 via a C-terminal consensus binding motif. Here, we developed a medium throughput protocol to accurately measure by surface plasmon resonance affinity constants of protein domains binding to peptidic sequences produced as recombinant fusions to the glutathione-S-transferase (GST). This approach was applied to measure the binding of MAGI-1 PDZ1 to the C-termini of viral or cellular proteins. Both high-risk mucosal HPV E6 C-terminal peptides and cellular partners of MAGI-1 PDZ1 bind to MAGI-1 PDZ1 with comparable dissociation constants in the micromolar range. MAGI-1 PDZ1 shows a preference for C-termini with a valine at position 0 and a negative charge at position S3, confirming previous studies performed with HPV18 E6. A detailed combined analysis via site-directed mutagenesis of the HPV16 C-terminal peptide and PDZ1 indicated that interactions mediated by charged residues upstream the PDZ-binding motif strongly contribute to binding selectivity of this interaction. In addition, our work highlighted the K_(499) residue of MAGI-1 as a novel determinant of binding specificity. Finally, we showed that MAGI-1 PDZ1 also binds to the C-termini of LPP and Tax proteins, which were already known to bind to PDZ proteins but not to MAGI-1.
机译:来自高危粘膜人乳头瘤病毒(HPV)的E6癌蛋白通过两种主要活性诱导宫颈癌,即p53蛋白和含PDZ域的蛋白的结合和降解。人MAGI-1是一种多PDZ域蛋白,在细胞-细胞接触处牵涉蛋白质复合物组装。高风险的粘膜HPV E6蛋白通过C末端共有结合基序与MAGI-1的PDZ1结构域相互作用。在这里,我们开发了一种中等通量协议,可以通过表面等离振子共振亲和常数来准确测量与作为重组融合到谷胱甘肽-S-转移酶(GST)的肽序列结合的蛋白质结构域的亲和常数。该方法用于测量MAGI-1 PDZ1与病毒或细胞蛋白C末端的结合。 MAGI-1 PDZ1的高风险粘膜HPV E6 C末端肽和细胞伴侣均以微摩尔范围内的相当的解离常数与MAGI-1 PDZ1结合。 MAGI-1 PDZ1显示了对C末端的优先选择,缬氨酸位于0位,负电荷位于S3位,这证实了先前使用HPV18 E6进行的研究。通过对HPV16 C末端肽和PDZ1的定点诱变进行的详细组合分析表明,由PDZ结合基序上游带电残基介导的相互作用强烈促进了该相互作用的结合选择性。此外,我们的工作强调了MAGI-1的K_(499)残基是结合特异性的新决定因素。最后,我们证明了MAGI-1 PDZ1还与LPP和Tax蛋白的C末端结合,而LPP和Tax蛋白已经与PDZ蛋白结合,但不与MAGI-1结合。

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