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A new structural model of Alzheimers Aβ42 fibrils based on electron paramagnetic resonance data and Rosetta modeling

机译:基于电子顺磁共振数据和Rosetta建模的阿尔茨海默氏病Aβ42原纤维的新结构模型

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摘要

Brain deposition of Aβ in the form of amyloid plaques is a pathological hallmark of Alzheimer's disease. There are two major species of Aβ in the brain: Aβ42 and Aβ40. Although Aβ40 is several-fold more abundant than Aβ42 in soluble form, Aβ42 is the major component of amyloid plaques. Structural knowledge of Aβ42 fibrils is important both for understanding the process of Aβ aggregation and for designing fibril-targeting drugs. Here we report site-specific structural information of Aβ42 fibrils at 22 residue positions based on electron paramagnetic resonance data. In combination with structure prediction program Rosetta, we modeled Aβ42 fibril structure at atomic resolution. Our Aβ42 fibril model consists of four parallel in-register β-sheets: βN (residues ~7-13), β1 (residues ~17-20), β2 (residues ~32-36), and βC (residues 39-41). The region of β1-loop-β2 in Aβ42 fibrils adopts similar structure as that in Aβ40 fibrils. This is consistent with our cross seeding data that Aβ42 fibril seeds shortened the lag phase of Aβ40 fibrillization. On the other hand, Aβ42 fibrils contain a C-terminal β-arc-β motif with a special turn, termed “arc”, at residues 37-38, which is absent in Aβ40 fibrils. Our results can explain both the higher aggregation propensity of Aβ42 and the importance of Aβ42 to Aβ40 ratio in the pathogenesis of Alzheimer's disease.
机译:淀粉样蛋白斑块形式的Aβ在脑中的沉积是阿尔茨海默氏病的病理标志。大脑中有两种主要的Aβ:Aβ42和Aβ40。尽管可溶形式的Aβ40比Aβ42富集数倍,但Aβ42是淀粉样斑块的主要成分。 Aβ42原纤维的结构知识对于理解Aβ聚集过程和设计针对原纤维的药物都非常重要。在此,我们基于电子顺磁共振数据报告22个残基位置的Aβ42原纤维的特定部位结构信息。结合结构预测程序Rosetta,我们以原子分辨率对Aβ42原纤维结构进行了建模。我们的Aβ42原纤维模型由四个平行的寄存器内β-折叠组成:βN(残基〜7-13),β1(残基〜17-20),β2(残基〜32-36)和βC(残基39-41)。 。 Aβ42原纤维中的β1-环-β2的区域具有与Aβ40原纤维中相似的结构。这与我们的交叉播种数据一致,即Aβ42原纤维种子缩短了Aβ40原纤维化的滞后阶段。另一方面,Aβ42的原纤维在残基37-38处含有A末端不存在的C端β-arc-β基序,并带有特殊的转弯,称为“ arc”。我们的结果既可以解释Aβ42的更高聚集倾向,又可以解释Aβ42与Aβ40的比率在阿尔茨海默氏病发病机理中的重要性。

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