首页> 外文期刊>Journal of Molecular Biology >Microscopic factors that control beta-sheet registry in amyloid fibrils formed by fragment 11-25 of amyloid beta peptide: insights from computer simulations.
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Microscopic factors that control beta-sheet registry in amyloid fibrils formed by fragment 11-25 of amyloid beta peptide: insights from computer simulations.

机译:控制由淀粉样蛋白β肽片段11-25形成的淀粉样蛋白原纤维中β-sheet注册表的微观因素:来自计算机模拟的见解。

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摘要

Short fragments of amyloidogenic proteins are widely used as model systems in studies of amyloid formation. Fragment 11-25 of the amyloid beta protein involved in Alzheimer's disease (Abeta11-25) was recently shown to form amyloid fibrils composed of anti-parallel beta-sheets. Interestingly, fibrils grown under neutral and acidic conditions were seen to possess different registries of their inter-beta-strand hydrogen bonds. In an effort to explain the microscopic origin of this pH dependence, we studied Abeta11-25 fibrils using methods of theoretical modeling. Several structural models were built for fibrils at low and neutral pH levels and these were examined in short molecular dynamics simulations in explicit water. The models that displayed the lowest free energy, as estimated using an implicit solvent model, were selected as representative of the true fibrillar structure. It was shown that the registry of these models agrees well with the experimental results. At neutral pH, the main contribution to the free energy difference between the two registries comes from the electrostatic interactions. The charge group of the carboxy terminus makes a large contribution to these interactions and thus appears to have a critical role in determining the registry.
机译:淀粉样蛋白生成蛋白的短片段被广泛用作淀粉样蛋白形成研究的模型系统。最近显示,与阿尔茨海默氏病(Abeta11-25)相关的淀粉样β蛋白的片段11-25形成了由反平行β-折叠构成的淀粉样原纤维。有趣的是,观察到在中性和酸性条件下生长的原纤维具有不同的β-链间氢键配体。为了解释这种pH依赖性的微观原因,我们使用理论建模方法研究了Abeta11-25原纤维。针对低和中性pH值的原纤维建立了几种结构模型,并在显式水中的短分子动力学模拟中对其进行了检验。选择使用隐式溶剂模型估算的具有最低自由能的模型作为真实原纤维结构的代表。结果表明,这些模型的注册表与实验结果非常吻合。在中性pH值下,两个注册表之间的自由能差的主要贡献来自于静电相互作用。羧基末端的电荷基团对这些相互作用做出了很大贡献,因此似乎在确定配体中起关键作用。

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