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Structural and functional properties of prefibrillar α-synuclein oligomers

机译:原纤维前α-突触核蛋白低聚物的结构和功能特性

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摘要

The deposition of fibrillar alpha-synuclein (α-syn) within inclusions (Lewy bodies and Lewy neurites) in neurons and glial cells is a hallmark of synucleinopathies. α-syn populates a variety of assemblies ranging from prefibrillar oligomeric species to fibrils whose specific contribution to neurodegeneration is still unclear. Here, we compare the specific structural and biological properties of distinct soluble prefibrillar α-syn oligomers formed either spontaneously or in the presence of dopamine and glutaraldehyde. We show that both on-fibrillar assembly pathway and distinct dopamine-mediated and glutaraldehyde-cross-linked α-syn oligomers are only slightly effective in perturbing cell membrane integrity and inducing cytotoxicity, while mature fibrils exhibit the highest toxicity. In contrast to low-molecular weight and unstable oligomers, large stable α-syn oligomers seed the aggregation of soluble α-syn within reporter cells although to a lesser extent than mature α-syn fibrils. These oligomers appear elongated in shape. Our findings suggest that α-syn oligomers represent a continuum of species ranging from unstable low molecular weight particles to mature fibrils via stable elongated oligomers composed of more than 15 α-syn monomers that possess seeding capacity.
机译:纤维状α-突触核蛋白(α-syn)在神经元和神经胶质细胞内含物(路易体和路易神经突)内的沉积是突触核病的标志。 α-syn填充了各种装配体,从原纤维前的寡聚物种到原纤维,这些原纤维对神经变性的具体作用尚不清楚。在这里,我们比较了自发形成或在多巴胺和戊二醛存在下形成的不同可溶性原纤维前α-syn低聚物的特定结构和生物学特性。我们表明原纤维组装途径和不同的多巴胺介导的和戊二醛交联的α-syn寡聚体在扰动细胞膜完整性和诱导细胞毒性方面仅略有效果,而成熟的原纤维则具有最高的毒性。与低分子量和不稳定的低聚物相反,大的稳定的α-syn寡聚物在报告细胞内播种了可溶性α-syn的聚集体,尽管程度不及成熟的α-syn的原纤维。这些低聚物的形状看起来是细长的。我们的发现表明,α-syn低聚物代表了一个连续的物种,其范围从不稳定的低分子量颗粒到成熟的原纤维,再到由超过15种具有播种能力的α-syn单体组成的稳定的细长低聚物。

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