首页> 外文期刊>Journal of Molecular Biology >The structural and dynamic response of MAGI-1 PDZ1 with noncanonical domain boundaries to the binding of human papillomavirus E6.
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The structural and dynamic response of MAGI-1 PDZ1 with noncanonical domain boundaries to the binding of human papillomavirus E6.

机译:具有非规范域边界的MAGI-1 PDZ1对人乳头瘤病毒E6结合的结构和动态响应。

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摘要

PDZ domains are protein interaction domains that are found in cytoplasmic proteins involved in signaling pathways and subcellular transport. Their roles in the control of cell growth, cell polarity, and cell adhesion in response to cell contact render this family of proteins targets during the development of cancer. Targeting of these network hubs by the oncoprotein E6 of "high-risk" human papillomaviruses (HPVs) serves to effect the efficient disruption of cellular processes. Using NMR, we have solved the three-dimensional solution structure of an extended construct of the second PDZ domain of MAGI-1 (MAGI-1 PDZ1) alone and bound to a peptide derived from the C-terminus of HPV16 E6, and we have characterized the changes in backbone dynamics and hydrogen bonding that occur upon binding. The binding event induces quenching of high-frequency motions in the C-terminal tail of the PDZ domain, which contacts the peptide upstream of the canonical X-[T/S]-X-[L/V] binding motif. Mutations designed in the C-terminal flanking region of the PDZ domain resulted in a significant decrease in binding affinity for E6 peptides. This detailed analysis supports the notion of a global response of the PDZ domain to the binding event, with effects propagated to distal sites, and reveals unexpected roles for the sequences flanking the canonical PDZ domain boundaries.
机译:PDZ域是在信号传导途径和亚细胞转运所涉及的细胞质蛋白中发现的蛋白质相互作用域。它们在控制细胞生长,细胞极性和响应细胞接触的细胞粘附中的作用使这一蛋白质靶标家族在癌症的发展过程中发挥作用。通过“高风险”人乳头瘤病毒(HPV)的癌蛋白E6靶向这些网络集线器,可有效破坏细胞过程。使用NMR,我们已经解决了MAGI-1(MAGI-1 PDZ1)的第二个PDZ域的扩展结构的三维解决方案结构,并与衍生自HPV16 E6 C端的肽结合,表征了结合后发生的主链动力学和氢键的变化。结合事件在PDZ域的C末端尾部诱导高频运动淬灭,该区域接触规范X- [T / S] -X- [L / V]结合基序上游的肽。在PDZ域的C末端侧翼区域设计的突变导致对E6肽的结合亲和力显着降低。这种详细的分析支持PDZ域对结合事件的整体响应的概念,并且效应传播到远端部位,并揭示了规范PDZ域边界两侧序列的意外作用。

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