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Conformational ensemble of native α-synuclein in solution as determined by short-distance crosslinking constraint-guided discrete molecular dynamics simulations

机译:通过短距离交联约束引导的离散分子动力学模拟确定的溶液中天然α-突触核蛋白的构象集合

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摘要

Combining structural proteomics experimental data with computational methods is a powerful tool for protein structure prediction. Here, we apply a recently-developed approach for de novo protein structure determination based on the incorporation of short-distance crosslinking data as constraints in discrete molecular dynamics simulations (CL-DMD) for the determination of conformational ensemble of the intrinsically disordered protein α-synuclein in the solution. The predicted structures were in agreement with hydrogen-deuterium exchange, circular dichroism, surface modification, and long-distance crosslinking data. We found that α-synuclein is present in solution as an ensemble of rather compact globular conformations with distinct topology and inter-residue contacts, which is well-represented by movements of the large loops and formation of few transient secondary structure elements. Non-amyloid component and C-terminal regions were consistently found to contain β-structure elements and hairpins.
机译:将结构蛋白质组学实验数据与计算方法相结合是蛋白质结构预测的强大工具。在这里,我们采用了一种新近开发的蛋白质结构确定方法,该方法基于短距离交联数据的约束,在离散分子动力学模拟(CL-DMD)中确定固有无序蛋白α-的构象整体溶液中的突触核蛋白。预测的结构与氢-氘交换,圆二色性,表面改性和长距离交联数据一致。我们发现,α-突触核蛋白在溶液中以相当紧凑的球状构象的集合形式存在,具有独特的拓扑结构和残基间接触,这通过大环的运动和少量瞬态二级结构元素的形成很好地表示出来。一致发现非淀粉样成分和C端区域包含β结构元素和发夹。

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