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Three Long-Range Distance Constraints and an Approach Towards a Model for the alpha-Synuclein-Fibril Fold

机译:三个远程距离约束和建立α-突触核蛋白-原纤维折叠模型的方法

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摘要

Amyloid fibrils and plaques are the hallmark of neurodegenerative diseases. In Parkinson's disease, plaques (Lewy bodies) consist predominantly of the alpha-synuclein (alpha S) protein. To understand aggregation, the molecular architecture of alpha S fibrils needs to be known. Here, we determine nm-distance constraints for the protein in the fibril by double electron-electron paramagnetic resonance (DEER) on doubly spin-labeled alpha S variants, diamagnetically diluted with wild-type alpha S to suppress intermolecular interactions. Intramolecular distances in three pairs (56/69, 56/90 and 69/90) are reported. An approach to derive a model for the fibril fold from sparse distance data assuming only parallel beta-sheets is described. Using the distances obtained in this study as input, a model is obtained with three strands, comprising residues 56-90, in which the strands consist of 8-12 residues each. Limitations of the approach are discussed in detail, showing that the interpretation of the data does not yet yield an unambiguous structure model. Possible avenues to improve this situation are described.
机译:淀粉样蛋白原纤维和斑块是神经退行性疾病的标志。在帕金森氏病中,斑块(路易体)主要由α-突触核蛋白(αS)蛋白组成。为了理解聚集,需要知道αS原纤维的分子结构。在这里,我们通过对双旋电子标记的αS变体进行双电子-电子顺磁共振(DEER)来确定原纤维中蛋白质的nm距离约束,并用野生型αS反磁性稀释以抑制分子间的相互作用。报告了三对(56 / 69、56 / 90和69/90)的分子内距离。描述了一种从稀疏距离数据推导原纤维折叠模型的方法,该方法仅假设平行的β-折叠。使用在这项研究中获得的距离作为输入,可获得具有三个链的模型,包括残基56-90,其中每个链由8-12个残基组成。详细讨论了该方法的局限性,表明对数据的解释尚未产生明确的结构模型。描述了改善这种情况的可能途径。

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