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阿尔茨海默病的Aβ肽与阴离子二巯基丙磺酸钠脂质双层结合。

The Alzheimer's disease Aβ peptide binds to the anionic DMPS lipid bilayer.

作者信息

Lockhart Christopher, Klimov Dmitri K

机构信息

School of Systems Biology and Computational Materials Science Center, George Mason University, Manassas, VA 20110, United States.

School of Systems Biology and Computational Materials Science Center, George Mason University, Manassas, VA 20110, United States.

出版信息

Biochim Biophys Acta. 2016 Jun;1858(6):1118-28. doi: 10.1016/j.bbamem.2016.03.001. Epub 2016 Mar 4.

Abstract

We have applied isobaric-isothermal replica exchange molecular dynamics (REMD) and the all-atom explicit water model to study binding of Aβ10-40 peptide to the anionic DMPS bilayer. To provide comparison with a zwitterionic bilayer, we used our previous REMD simulations probing binding of the same peptide to the DMPC bilayer. Using two sets of simulations, we comparatively analyzed the equilibrium Aβ conformational ensemble, peptide-bilayer interactions, and changes in the bilayer structure induced by Aβ binding. Our results are six-fold. (1) Binding to the DMPS bilayer triggers the formation of stable helix in the Aβ C-terminal, although the helix-inducing effect caused by DMPS lipids is weaker than that of DMPC. (2) Compared to the DMPC-bound Aβ monomer, the anionic bilayer weakens intrapeptide interactions, particularly, formed by charged amino acids. (3) Binding of Aβ peptide to the DMPS bilayer is primarily governed by electrostatic interactions between charged amino acids and charged lipid groups. In contrast, these interactions play minor role in Aβ binding to the DMPC bilayer. (4) Aβ peptide generally resides on the DMPS bilayer surface causing relatively minor bilayer thinning. The opposite scenario applies to Aβ binding to the DMPC bilayer. (5) In contrast to DMPC simulations, Aβ largely expels anionic lipids from its binding "footprint" forming a ring of charged amino acids mixed with charged lipid groups around the peptide. (6) Aβ binding disorders proximal DMPS lipids more strongly than their DMPC counterparts. Our simulations show that Aβ monomers fail to perturb anionic or zwitterionic bilayers across both leaflets.

摘要

我们应用了等压等温复制交换分子动力学(REMD)和全原子显式水模型来研究Aβ10 - 40肽与阴离子型二巯基丙磺酸钠(DMPS)双层膜的结合。为了与两性离子双层膜进行比较,我们使用了之前的REMD模拟来探究同一肽与二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜的结合。通过两组模拟,我们比较分析了Aβ的平衡构象集合、肽与双层膜的相互作用以及Aβ结合引起的双层膜结构变化。我们的结果有六个方面。(1)与DMPS双层膜结合会触发Aβ C末端稳定螺旋的形成,尽管DMPS脂质引起的螺旋诱导效应比DMPC弱。(2)与结合DMPC的Aβ单体相比,阴离子双层膜会削弱肽内相互作用,特别是由带电荷氨基酸形成的相互作用。(3)Aβ肽与DMPS双层膜的结合主要由带电荷氨基酸与带电荷脂质基团之间的静电相互作用主导。相比之下,这些相互作用在Aβ与DMPC双层膜的结合中起次要作用。(4)Aβ肽通常位于DMPS双层膜表面,导致双层膜变薄相对较小。相反的情况适用于Aβ与DMPC双层膜的结合。(5)与DMPC模拟不同,Aβ在其结合“足迹”中大量排出阴离子脂质,在肽周围形成一圈由带电荷氨基酸和带电荷脂质基团混合而成的环。(6)Aβ结合对近端DMPS脂质的扰乱比其对DMPC对应脂质的扰乱更强。我们的模拟表明,Aβ单体无法跨两个小叶扰乱阴离子或两性离子双层膜。

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