首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Coarse-grained simulations reveal beta-amyloid fibrils of various sizes bind to interfacial liquid-ordered and liquid-disordered regions in phase separated lipid rafts with diverse membrane-bound conformational states
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Coarse-grained simulations reveal beta-amyloid fibrils of various sizes bind to interfacial liquid-ordered and liquid-disordered regions in phase separated lipid rafts with diverse membrane-bound conformational states

机译:粗粒模拟揭示各种尺寸的β-淀粉样蛋白原纤维与相位分离的脂质筏中的界面液体有序和液体无序区域与不同的膜结合的构象状态结合

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摘要

The membrane binding behaviors of beta-amyloid fibrils, dimers to pentamers, from solution to lipid raft surfaces, were investigated using coarse-grained (CG) MD simulations. Our CG rafts contain phospholipid, cholesterol (with or without tail- or headgroup modifications), and with or without asymmetrically distributed monosialotetrahexosylganglioside (GM1). All rafts exhibited liquid-ordered (Lo), liquid-disordered (Ld), and interfacial Lo/Ld (Lod) domains, with domain sizes depending on cholesterol structure. For rafts without GM1, all fibrils bound to the Lod domains. Specifically, dimer fibrils bound exclusively via the C-terminal, while larger fibrils could bind via other protein regions. Interestingly, a membrane-inserted state was detected for a timer fibril in a raft with tail-group modified cholesterol. For rafts containing GM1, fibrils bound either to the GM1clusters, with numerous membrane-bound conformations, or to the non-GM1-containing-Lod domains via the C-terminal. Our results indicate beta-amyloid fibrils bind to Lod domains or GM1, with diversified membrane-bound conformations, in structurally heterogeneous lipid membranes.
机译:使用粗粒(CG)MD仿真研究了β-淀粉样蛋白原纤维,从脂质筏表面的溶液中的膜结合到五聚体。我们的CG筏含有磷脂,胆固醇(有或没有尾部或头组修饰),并且有或没有不对称分布的单透明剂四乳酪糖苷(GM1)。所有筏表现出液体有序(LO),液体排序(LD)和界面LO / LD(LOD)结构域,具体取决于胆固醇结构的域尺寸。对于没有GM1的筏,所有原纤维都与LOD结构域结合起来。具体地,通过C末端专用的二聚体原纤维,而较大的原纤维可以通过其他蛋白质区域结合。有趣的是,用尾族改性胆固醇检测用于筏中的计时器原纤维的膜插入状态。对于含有GM1的筏,纤维物与GM 1结合的原纤维,具有许多膜结合的构象,或通过C末端对非GM1-Lod结构域。我们的结果表明β-淀粉样蛋白原纤维与洛氏肿瘤或GM1结合,具有多样化的膜结合构象,在结构异质的脂质膜中。

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