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Insights into Structure Stability and Toxicity of Monomeric and Aggregated Polyglutamine Models from Molecular Dynamics Simulations

机译:从分子动力学模拟洞察单体和聚集聚谷氨酰胺模型的结构稳定性和毒性

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摘要

Nine genetically inherited neurodegenerative diseases are linked to abnormal expansions of a polyglutamine (polyQ) encoding region. Over the years, several structural models for polyQ regions have been proposed and confuted. The cross-β-spine steric zipper motif, identified recently for the GNNQQNY peptide, represents an attractive model for amyloid fibers formed by polyQ fragments. Here we report a detailed molecular dynamics investigation of polyQ models assembled by cross-β-spine steric zipper motifs. Our simulations indicate clearly that these assemblies are very stable. Glutamine side chains contribute strongly to the overall stability of the models by fitting perfectly within the zipper. In contrast to GNNQQNY zipper motifs, hydrogen bonding interactions provide a significant contribution to the overall stability of polyQ models. Molecular dynamics simulations carried out on monomeric polyQ forms (composed by 40–60 residues) show clearly that they can also assume structures stabilized by steric zipper motifs. Based on these findings, we build monomeric polyQ models that can explain recent data on the toxicity exerted by these species. In a more general context, our data suggests that polyQ models with interdigitated side chains can provide a structural rationale to several literature experiments on polyQ formation, stability, and toxicity.
机译:九种遗传性神经退行性疾病与聚谷氨酰胺(polyQ)编码区的异常扩展有关。多年来,已经提出并混淆了针对polyQ区域的几种结构模型。最近为GNNQQNY肽鉴定的交叉β-脊柱立体拉链基序,代表了由polyQ片段形成的淀粉样蛋白纤维的诱人模型。在这里,我们报告了由跨β-脊柱立体拉链图案组装的polyQ模型的详细分子动力学研究。我们的仿真清楚地表明,这些组件非常稳定。谷氨酰胺侧链通过完美地安装在拉链中,为模型的整体稳定性做出了重要贡献。与GNNQQNY拉链图案相反,氢键相互作用为polyQ模型的整体稳定性提供了重要的贡献。对单体polyQ形式(由40–60个残基组成)进行的分子动力学模拟清楚地表明,它们还可以假定通过空间拉链基序稳定的结构。基于这些发现,我们建立了单体polyQ模型,可以解释这些物种所发挥的毒性的最新数据。在更一般的情况下,我们的数据表明,带有叉指侧链的polyQ模型可以为有关polyQ形成,稳定性和毒性的一些文献实验提供结构上的依据。

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