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Amyloid Polymorphism in the Protein Folding and Aggregation Energy Landscape

机译:蛋白质折叠和聚集能量景观中的淀粉样蛋白多态性

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摘要

Protein folding involves a large number of steps and conformations in which the folding protein samples different thermodynamic states characterized by local minima. Kinetically trapped on- or off-pathway intermediates are metastable folding intermediates towards the lowest absolute energy minima, which have been postulated to be the natively folded state where intramolecular interactions dominate, and the amyloid state where intermolecular interactions dominate. However, this view largely neglects the rich polymorphism found within amyloid species. We review the protein folding energy landscape in view of recent findings identifying specific transition routes among different amyloid polymorphs. Observed transitions such as twisted ribboncrystal or helical ribbonnanotube, and forbidden transitions such helical ribbon?crystal, are discussed and positioned within the protein folding and aggregation energy landscape. Finally, amyloid crystals are identified as the ground state of the protein folding and aggregation energy landscape.
机译:蛋白质折叠涉及大量步骤和构象,其中折叠蛋白质样本特征的不同热力学状态。动力学捕获的或偏离途径中间体是朝向最低绝对能量最小值的稳定性折叠中间体,其被假定为本体分子间相互作用的本地折叠状态,以及分子间相互作用占主导地位的淀粉样蛋白状态。然而,这一观点在很大程度上忽略了淀粉样物种中发现的富多态性。鉴于识别不同淀粉样蛋白多晶型物之间的特定过渡途径的最近发现,我们审查了蛋白质折叠能量景观。观察到的过渡如扭曲的丝带或螺旋状核糖管,并禁止过渡这种螺旋状带?晶体,并定位在蛋白质折叠和聚集能量景观内。最后,淀粉样晶体被鉴定为蛋白质折叠和聚集能量景观的地位。

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