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Methionine Oxidation Changes the Mechanism of Aβ Peptide Binding to the DMPC Bilayer

机译:蛋氨酸氧化改变Aβ肽与DMPC双层结合的机制

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Using all-atom explicit solvent replica exchange molecular dynamics simulations with solute tempering, we study the effect of methionine oxidation on Aβ10-40 peptide binding to the zwitterionic DMPC bilayer. By comparing oxidized and reduced peptides, we identified changes in the binding mechanism caused by this modification. First, Met35 oxidation unravels C-terminal helix in the bound peptides. Second, oxidation destabilizes intrapeptide interactions and expands bound peptides. We explain these outcomes by the loss of amphiphilic character of the C-terminal helix due to oxidation. Third, oxidation "polarizes" Aβ binding to the DMPC bilayer by strengthening the interactions of the C-terminus with lipids while largely releasing the rest of the peptide from bilayer. Fourth, in contrast to the wild-type peptide, oxidized Aβ induces significantly smaller bilayer thinning and drop in lipid density within the binding footprint. These observations are the consequence of mixing oxidized peptide amino acids with lipids promoted by enhanced Aβ conformational fluctuations. Fifth, methionine oxidation reduces the affinity of Aβ binding to the DMPC bilayer by disrupting favorable intrapeptide interactions upon binding, which offset the gains from better hydration. Reduced binding affinity of the oxidized Aβ may represent the molecular basis for its reduced cytotoxicity.
机译:使用溶质回火的全原子显式溶剂副本交换分子动力学模拟,我们研究了蛋氨酸氧化对Aβ10-40肽与两性离子DMPC双层结合的影响。通过比较氧化和还原的肽,我们确定了由这种修饰引起的结合机制的变化。首先,Met35氧化解离结合肽中的C末端螺旋。第二,氧化使内肽相互作用不稳定并扩大结合的肽。我们通过氧化导致C末端螺旋两亲性丧失而解释了这些结果。第三,氧化通过增强C末端与脂质的相互作用而使Aβ与DMPC双层的结合“极化”,同时大部分肽从双层中释放出来。第四,与野生型肽相反,被氧化的Aβ诱导了明显更小的双层变薄和结合足迹内脂质密度的下降。这些观察结果是将氧化的肽氨基酸与由增强的Aβ构象波动促进的脂质混合的结果。第五,蛋氨酸氧化通过破坏结合时有利的肽内相互作用而降低了Aβ与DMPC双层结合的亲和力,这抵消了更好的水合作用所获得的收益。氧化的Aβ的结合亲和力降低可能代表其细胞毒性降低的分子基础。

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