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Aβ42 四聚体的结构和物理化学性质:多尺度分子动力学模拟。

Structure and Physicochemical Properties of the Aβ42 Tetramer: Multiscale Molecular Dynamics Simulations.

机构信息

Institute for Computational Science and Technology , SBI Building , Quang Trung Software City, Tan Chanh Hiep Ward, District 12, Ho Chi Minh City 700000 , Vietnam.

Biomedical Engineering Department , Ho Chi Minh City University of Technology-VNU HCM , 268 Ly Thuong Kiet Street , Distr. 10, Ho Chi Minh City 700000 , Vietnam.

出版信息

J Phys Chem B. 2019 Aug 29;123(34):7253-7269. doi: 10.1021/acs.jpcb.9b04208. Epub 2019 Aug 14.

Abstract

Despite years of intensive research, little is known about oligomeric structures present during Alzheimer's disease (AD). Excess of amyloid beta (Aβ) peptides and their aggregation are the basis of the amyloid cascade hypothesis, which attempts to explain the causes of AD. Because of the intrinsically disordered nature of Aβ monomers and the high aggregation rate of oligomers, their structures are almost impossible to resolve using experimental methods. For this reason, we used a physics-based coarse-grained force field to extensively search for the conformational space of the Aβ42 tetramer, which is believed to be the smallest stable Aβ oligomer and the most toxic one. The resulting structures were subsequently optimized, tested for stability, and compared with the proposed experimental fibril models, using molecular dynamics simulations in two popular all-atom force fields. Our results show that the Aβ42 tetramer can form polymorphic stable structures, which may explain different pathways of Aβ aggregation. The models obtained comprise the outer and core chains and, therefore, are significantly different from the structure of mature fibrils. We found that interaction with water is the reason why the tetramer is more compact and less dry inside than fibrils. Physicochemical properties of the proposed all-atom structures are consistent with the available experimental observations and theoretical expectations. Therefore, we provide possible models for further study and design of higher order oligomers.

摘要

尽管经过多年的深入研究,人们对阿尔茨海默病(AD)期间存在的寡聚体结构仍知之甚少。淀粉样β(Aβ)肽的过量和它们的聚集是淀粉样蛋白级联假说的基础,该假说试图解释 AD 的原因。由于 Aβ 单体的固有无序性质和寡聚物的高聚集率,使用实验方法几乎不可能解析它们的结构。出于这个原因,我们使用基于物理的粗粒度力场来广泛搜索 Aβ42 四聚体的构象空间,该四聚体被认为是最小的稳定 Aβ 寡聚体,也是最具毒性的一种。随后使用两种流行的全原子力场中的分子动力学模拟对所得结构进行优化、稳定性测试,并与提出的实验原纤维模型进行比较。我们的结果表明,Aβ42 四聚体可以形成多晶稳定结构,这可以解释 Aβ 聚集的不同途径。获得的模型包括外链和核心链,因此与成熟原纤维的结构有很大的不同。我们发现,与水的相互作用是四聚体比原纤维更紧凑且内部更湿润的原因。所提出的全原子结构的物理化学性质与现有实验观察和理论预期一致。因此,我们为进一步研究和设计更高阶的寡聚体提供了可能的模型。

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