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Assessing Polyglutamine Conformation in the Nucleating Event by Molecular Dynamics Simulations

机译:通过分子动力学模拟评估成核事件中的聚谷氨酰胺构象

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Polyglutamine (polyQ) diseases comprise a group of dominantiy inherited pathology caused by an expansion of an unstable polyQ stretch which is presumed to form β-sheets. Similar to other amyloid pathologies, polyQ amyloidogenesis occurs via a nucleated polymerization mechanism, and proceeds through energetically unfavorable nucleus whose existence and stmcture are difficult to detect. Here, we use atomistic molecular dynamics simulations in explicit solvent to assess the conformation of the polyQ stretch in the nucleus that initiates polyQ,fibrillization. Comparison of the kinetic stability of various structures of polyQ peptide with a Q-length in the pathological range (Q_(40)) revealed that steric zipper or nanotube-like structures (β-nanotube or β-pseudohelix) are not kinetically stable enough to serve as a template to initiate polyQ fibrillization as opposed to β-hairpin-based (β-sheet and β-sheetstack) or α-helical conformations. The selection of different structures of the polyQ stretch in the aggregation-initiating event may provide an alternative explanation for polyQ aggregate polymorphism.
机译:聚谷氨酰胺(polyQ)疾病包括一组由不稳定的polyQ延伸区扩展而引起的显性遗传病理,假定该延伸可能形成β-折叠。与其他淀粉样蛋白病理学相似,polyQ淀粉样蛋白生成是通过有核聚合机制发生的,并通过能量上不利且难以检测其存在和存在的原子核进行。在这里,我们在显式溶剂中使用原子分子动力学模拟来评估启动polyQ的原核中polyQ延伸的构象。 Q长度在病理范围内(Q_(40))的polyQ肽的各种结构的动力学稳定性的比较表明,空间拉链或类似纳米管的结构(β-纳米管或β-假螺旋)的动力学稳定性不足以达到与基于β-发夹结构(β-sheet和β-sheetstack)或α-螺旋构象相反,它充当启动polyQ原纤维化的模板。在聚集引发事件中对polyQ延伸的不同结构的选择可以为polyQ聚集多态性提供另一种解释。

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