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Surface-Directed Structural Transition of Amyloidogenic Aggregates and the Resulting Neurotoxicity

机译:淀粉样蛋白聚集体和所得神经毒性的表面定向结构转变

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摘要

The transition of amyloidogenic species into ordered structures (i.e., prefibrillar oligomers, protofibrils, mature fibrils, and amyloidogenic aggregates) is closely associated with many neurodegenerative disease pathologies. It is increasingly appreciated that the liquid–solid interface contributes to peptide aggregation under physiological conditions. However, much remains to be explored on the molecular mechanism of surface-directed amyloid formation. We herein demonstrate that physical environmental conditions (i.e., negatively charged surface) affect amyloid formation. Nontoxic amyloid aggregates quickly develop into intertwisting fibrils on a negatively charged mica surface. These fibrillar structures show significant cytotoxicity on both neuroblastoma cell-lines (SH-SY5Y) and primary neural stem cells. Our results suggest an alternative amyloid development pathway, following which Aβ peptides form large amyloidogenic aggregates upon stimulation, and later transit into neurotoxic fibrillar structures while being trapped and aligned by a negatively charged surface. Conceivably, the interplay between chemical and physical environmental conditions plays important roles in the development of neurodegenerative diseases.
机译:淀粉样物质的转变为有序结构(即,前硫粒子低聚物,原纤维,成熟的原纤维和淀粉样蛋白聚集体)与许多神经变性疾病病理密切相关。越来越理解,液体固体界面在生理条件下有助于肽聚集。然而,关于表面引导的淀粉样蛋白形成的分子机制仍有许多仍然探索。我们在此证明了物理环境条件(即负电荷的表面)影响淀粉样蛋白形成。无毒淀粉样蛋白聚集体迅速发展成带负电的云母表面上的嵌入原纤维。这些纤维状结构在神经母细胞瘤细胞系(SH-SY5Y)和初级神经干细胞上显示出显着的细胞毒性。我们的研究结果表明了替代的淀粉样蛋白发育途径,其中Aβ肽在刺激后形成大的淀粉样蛋白聚集体,后来在被捕获的同时转移到神经毒性纤维状结构中,并通过带负电的表面排列。可以想象,化学和物理环境之间的相互作用在神经变性疾病的发展中起着重要作用。

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