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Anti-Parallel β-Hairpin Structure in Soluble Aβ Oligomers of Aβ40-Dutch and Aβ40-Iowa

机译:Aβ40-Dutch和Aβ40-iowa可溶性Aβ寡聚体中的抗平行β-发夹结构

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摘要

The amyloid-β (Aβ) peptides are associated with two prominent diseases in the brain, Alzheimer’s disease (AD) and cerebral amyloid angiopathy (CAA). Aβ42 is the dominant component of cored parenchymal plaques associated with AD, while Aβ40 is the predominant component of vascular amyloid associated with CAA. There are familial CAA mutations at positions Glu22 and Asp23 that lead to aggressive Aβ aggregation, drive vascular amyloid deposition and result in degradation of vascular membranes. In this study, we compared the transition of the monomeric Aβ40-WT peptide into soluble oligomers and fibrils with the corresponding transitions of the Aβ40-Dutch (E22Q), Aβ40-Iowa (D23N) and Aβ40-Dutch, Iowa (E22Q, D23N) mutants. FTIR measurements show that in a fashion similar to Aβ40-WT, the familial CAA mutants form transient intermediates with anti-parallel β-structure. This structure appears before the formation of cross-β-sheet fibrils as determined by thioflavin T fluorescence and circular dichroism spectroscopy and occurs when AFM images reveal the presence of soluble oligomers and protofibrils. Although the anti-parallel β-hairpin is a common intermediate on the pathway to Aβ fibrils for the four peptides studied, the rate of conversion to cross-β-sheet fibril structure differs for each.
机译:淀粉样蛋白-β(Aβ)肽与大脑中的两个突出疾病有关,阿尔茨海默病(Ad)和脑淀粉样血管病(CAA)。 Aβ42是与AD相关的芯实质斑块的主要成分,而Aβ40是与CAA相关的血管淀粉样蛋白的主要成分。位置Glu22和Asp23的定位CAA突变导致侵袭性Aβ聚集,驱动血管淀粉样蛋白沉积并导致血管膜的降解。在这项研究中,将单体Aβ40-WT肽的转变与Aβ40-荷兰(E22Q),Aβ40-Iowa(D23N)和Aβ40-荷荷,爱荷华(E22Q,D23N)的相应转变进行了与可溶性低聚物和原纤维的转变突变体。 FTIR测量表明,以类似于Aβ40-WT的方式,家族性CAA突变体形成瞬时中间体,具有抗平行β-结构。该结构出现在形成通过硫蛋白T荧光和圆形二色性光谱法确定的交叉β-片原纤维之前,并且当AFM图像显示出可溶性低聚物和原生纤维的存在时发生。虽然抗平行β-发夹是对所研究的四种肽的Aβ原纤维途径的常见中间体,但转化率与交叉β-片纤维结构的速率不同。

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