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铜(II)结合对淀粉样β蛋白单体和二聚体结构与动力学的影响:分子动力学研究

Impact of Cu(II) Binding on Structures and Dynamics of Aβ Monomer and Dimer: Molecular Dynamics Study.

作者信息

Huy Pham Dinh Quoc, Vuong Quan Van, La Penna Giovanni, Faller Peter, Li Mai Suan

机构信息

Institute of Physics, Polish Academy of Sciences , Al. Lotnikow 32/46, 02-668 Warsaw, Poland.

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

出版信息

ACS Chem Neurosci. 2016 Oct 19;7(10):1348-1363. doi: 10.1021/acschemneuro.6b00109. Epub 2016 Aug 16.

Abstract

The classical force field, which is compatible with the Amber force field 99SB, has been obtained for the interaction of Cu(II) with monomer and dimers of amyloid-β peptides using the coordination where Cu(II) is bound to His6, His13 (or His14), and Asp1 with distorted planar geometry. The newly developed force field and molecular dynamics simulation were employed to study the impact of Cu(II) binding on structures and dynamics of Aβ monomer and dimers. It was shown that in the presence of Cu(II) the β content of monomer is reduced substantially compared with the wild-type Aβ suggesting that, in accord with experiments, metal ions facilitate formation of amorphous aggregates rather than amyloid fibrils with cross-β structures. In addition, one possible mechanism for amorphous assembly is that the Asp23-Lys28 salt bridge, which plays a crucial role in β sheet formation, becomes more flexible upon copper ion binding to the Aβ N-terminus. The simulation of dimers was conducted with the Cu(II)/Aβ stoichiometric ratios of 1:1 and 1:2. For the 1:1 ratio Cu(II) delays the Aβ dimerization process as observed in a number of experiments. The mechanism underlying this phenomenon is associated with slow formation of interchain salt bridges in dimer as well as with decreased hydrophobicity of monomer upon Cu-binding.

摘要

已经通过配位获得了与Amber力场99SB兼容的经典力场,该力场用于研究Cu(II)与淀粉样β肽单体和二聚体的相互作用,其中Cu(II)与His6、His13(或His14)和Asp1结合,具有扭曲的平面几何结构。利用新开发的力场和分子动力学模拟研究了Cu(II)结合对Aβ单体和二聚体结构及动力学的影响。结果表明,与野生型Aβ相比,在Cu(II)存在下,单体的β含量显著降低,这表明,与实验结果一致,金属离子促进无定形聚集体的形成,而不是具有交叉β结构的淀粉样纤维。此外,无定形组装的一种可能机制是,在β片层形成中起关键作用的Asp23-Lys28盐桥,在铜离子与Aβ N端结合后变得更加灵活。以Cu(II)/Aβ化学计量比1:1和1:2对二聚体进行了模拟。对于1:1的比例,正如在许多实验中观察到的那样,Cu(II)延迟了Aβ二聚化过程。这种现象背后的机制与二聚体中链间盐桥形成缓慢以及Cu结合后单体疏水性降低有关。

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