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alpha-Synuclein misfolding and aggregation: Implications in Parkinson's disease pathogenesis

机译:α-突触核蛋白错误和聚合:帕金森病发病机制的影响

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摘要

alpha-Synuclein (alpha-Syn) has been extensively studied for its structural and biophysical properties owing to its pathophysiological role in Parkinson's disease (PD). Lewy bodies and Lewy neurites are the pathological hallmarks of PD and contain alpha-Syn aggregates as their major component. It was therefore hypothesized that alpha-Syn aggregation is actively associated with PD pathogenesis. The central role of alpha-Syn aggregation in PD is further supported by the identification of point mutations in alpha-Syn protein associated with rare familial forms of PD. However, the correlation between aggregation propensities of alpha-Syn mutants and their association with PD phenotype is not straightforward. Recent evidence suggested that oligomers, formed during the initial stages of aggregation, are the potent neurotoxic species causing cell death in PD. However, the heterogeneous and unstable nature of these oligomers limit their detailed characterization. alpha-Syn fibrils, on the contrary, are shown to be the infectious agents and propagate in a prion-like manner. Although alpha-Syn is an intrinsically disordered protein, it exhibits remarkable conformational plasticity by adopting a range of structural conformations under different environmental conditions. In this review, we focus on the structural and functional aspects of alpha-Syn and role of potential factors that may contribute to the underlying mechanism of synucleinopathies. This information will help to identify novel targets and develop specific therapeutic strategies to combat Parkinson's and other protein aggregation related neurodegenerative diseases.
机译:由于其在帕金森病(PD)的病理生理作用,已经广泛地研究了α-突触核蛋白(α-SYN)的结构和生物物理。 Lewy Stodies和Lewy Neuries是PD的病理标志,并含有α-SYN骨料作为主要组成部分。因此,假设α-SYN聚集在于与PD发病机制主动相关。通过识别与稀有家族性形式的Pd相关的α-SYN蛋白中的点突变进一步支持α-SYN聚集在PD中的中心作用。然而,α-SYN突变体的聚集施力与PD表型的关联之间的相关性并不直接。最近的证据表明,在聚集的初始阶段形成的低聚物是有效的神经毒性物质,导致PD中的细胞死亡。然而,这些低聚物的异质和不稳定性质限制了它们的详细表征。相反,α-SYN原纤维被显示为传染性剂,并以朊病毒方式繁殖。虽然α-SYN是一种本质上无序的蛋白质,但它通过采用不同环境条件下的结构构象的范围来表现出显着的构象可塑性。在这篇综述中,我们专注于α-syn-syn的结构和功能方面,以及可能导致突发病症的潜在机制有助于潜在因素的作用。这些信息将有助于识别新颖的目标,并制定对抗帕金森和其他蛋白质聚集相关神经变性疾病的具体治疗策略。

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