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The Position of Aβ22−40 and Aβ1−42 in Anionic Lipid Membranes Containing Cholesterol

机译: 22−40 和Aβ 1-42 在含胆固醇的阴离子脂质膜中的位置

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Amyloid-β peptides interact with cell membranes in the human brain and are associated with neurodegenerative diseases, such as Alzheimer’s disease. An emerging explanation of the molecular mechanism, which results in neurodegeneration, places the cause of neurotoxicity of the amyloid-β peptides on their potentially negative interaction with neuronal membranes. It is known that amyloid-β peptides interact with the membrane, modifying the membrane’s structural and dynamic properties. We present a series of X-ray diffraction experiments on anionic model lipid membranes containing various amounts of cholesterol. These experiments provide experimental evidence for an interaction of both the full length amyloid- β 1 − 42 peptide, and the peptide fragment amyloid- β 22 − 40 with anionic bilayer containing cholesterol. The location of the amyloid-β peptides was determined from these experiments, with the full length peptide embedding into the membrane, and the peptide fragment occupying 2 positions—on the membrane surface and embedded into the membrane core.
机译:淀粉样β肽与人脑中的细胞膜相互作用,并与神经退行性疾病(例如阿尔茨海默氏病)相关。对导致神经退行性变的分子机制的新解释将淀粉样蛋白-β肽与神经元膜的潜在负性相互作用的原因归因于神经毒性。众所周知,淀粉样β肽会与膜相互作用,从而改变膜的结构和动态特性。我们介绍了一系列包含各种胆固醇的阴离子模型脂质膜的X射线衍射实验。这些实验提供了全长淀粉样蛋白β1-42肽和肽片段淀粉样蛋白β22-40与含有胆固醇的阴离子双层相互作用的实验证据。从这些实验中确定了淀粉样β肽的位置,将全长肽嵌入膜中,并且肽片段在膜表面上占据了2个位置,并嵌入了膜核心中。

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