Król Sylwia, Österlund Nicklas, Vosough Faraz, Jarvet Jüri, Wärmländer Sebastian, Barth Andreas, Ilag Leopold L, Magzoub Mazin, Gräslund Astrid, Mörman Cecilia
Department of Biochemistry and Biophysics, Stockholm University, Stockholm, 106 91, Sweden.
Department of Materials and Environmental Chemistry, Stockholm University, Stockholm, 106 91, Sweden.
iScience. 2021 Jul 10;24(8):102852. doi: 10.1016/j.isci.2021.102852. eCollection 2021 Aug 20.
Substantial research efforts have gone into elucidating the role of protein misfolding and self-assembly in the onset and progression of Alzheimer's disease (AD). Aggregation of the Amyloid-β (Aβ) peptide into insoluble fibrils is closely associated with AD. Here, we use biophysical techniques to study a peptide-based approach to target Aβ amyloid aggregation. A peptide construct, NCAM-PrP, consists of a largely hydrophobic signal sequence linked to a positively charged hexapeptide. The NCAM-PrP peptide inhibits Aβ amyloid formation by forming aggregates which are unavailable for further amyloid aggregation. In a membrane-mimetic environment, Aβ and NCAM-PrP form specific heterooligomeric complexes, which are of lower aggregation states compared to Aβ homooligomers. The Aβ:NCAM-PrP interaction appears to take place on different aggregation states depending on the absence or presence of a membrane-mimicking environment. These insights can be useful for the development of potential future therapeutic strategies targeting Aβ at several aggregation states.
大量研究致力于阐明蛋白质错误折叠和自组装在阿尔茨海默病(AD)发病及进展中的作用。淀粉样β(Aβ)肽聚集成不溶性纤维与AD密切相关。在此,我们使用生物物理技术研究一种基于肽的方法来靶向Aβ淀粉样聚集。一种肽构建体NCAM-PrP,由一个主要为疏水的信号序列与一个带正电荷的六肽相连组成。NCAM-PrP肽通过形成不可用于进一步淀粉样聚集的聚集体来抑制Aβ淀粉样形成。在膜模拟环境中,Aβ和NCAM-PrP形成特定的异源寡聚体复合物,与Aβ同源寡聚体相比,其聚集状态较低。Aβ与NCAM-PrP的相互作用似乎根据膜模拟环境的有无而在不同的聚集状态下发生。这些见解可能有助于开发未来针对多种聚集状态Aβ的潜在治疗策略。