纤维
蒙特卡罗方法
分子动力学
淀粉样纤维
化学物理
化学
单体
分子生物物理学
格子(音乐)
动力学蒙特卡罗方法
统计物理学
结晶学
计算化学
生物物理学
淀粉样β
物理
聚合物
病理
统计
生物
有机化学
医学
疾病
生物化学
数学
声学
作者
Phuong H. Nguyen,Philippe Derreumaux
摘要
As a model of self-assembly from disordered monomers to fibrils, the amyloid-β fragment Aβ16-22 was subject to past numerous experimental and computational studies. Because dynamics information between milliseconds and seconds cannot be assessed by both studies, we lack a full understanding of its oligomerization. Lattice simulations are particularly well suited to capture pathways to fibrils. In this study, we explored the aggregation of 10 Aβ16–22 peptides using 65 lattice Monte Carlo simulations, each simulation consisting of 3 × 109 steps. Based on a total of 24 and 41 simulations that converge and do not converge to the fibril state, respectively, we are able to reveal the diversity of the pathways leading to fibril structure and the conformational traps slowing down the fibril formation.
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