Wang Hongzhi, Wu Jinming, Sternke-Hoffmann Rebecca, Zheng Wenwei, Mörman Cecilia, Luo Jinghui
Department of Biology and Chemistry, Paul Scherrer Institute, 5232, Villigen, Switzerland.
College of Integrative Sciences and Arts, Arizona State University, 85212, Mesa, AZ, USA.
Commun Chem. 2022 Dec 13;5(1):171. doi: 10.1038/s42004-022-00786-1.
Amyloid-β (Aβ) peptide aggregation plays a central role in the progress of Alzheimer's disease (AD), of which Aβ-deposited extracellular amyloid plaques are a major hallmark. The brain micro-environmental variation in AD patients, like local acidification, increased ionic strength, or changed metal ion levels, cooperatively modulates the aggregation of the Aβ peptides. Here, we investigate the multivariate effects of varied pH, ionic strength and Zn on Aβ fibrillation kinetics. Our results reveal that Aβ fibrillation kinetics are strongly affected by pH and ionic strength suggesting the importance of electrostatic interactions in regulating Aβ fibrillation. More interestingly, the presence of Zn ions can further alter or even reserve the role of pH and ionic strength on the amyloid fibril kinetics, suggesting the importance of amino acids like Histidine that can interact with Zn ions. Both pH and ionic strength regulate the secondary nucleation processes, however regardless of pH and Zn ions, ionic strength can also modulate the morphology of Aβ aggregates. These multivariate effects in bulk solution provide insights into the correlation of pH-, ionic strength- or Zn ions changes with amyloid deposits in AD brain and will deepen our understanding of the molecular pathology in the local brain microenvironment.
淀粉样β(Aβ)肽聚集在阿尔茨海默病(AD)的进展中起核心作用,其中Aβ沉积的细胞外淀粉样斑块是一个主要标志。AD患者大脑微环境的变化,如局部酸化、离子强度增加或金属离子水平改变,共同调节Aβ肽的聚集。在此,我们研究了不同pH值、离子强度和锌对Aβ纤维化动力学的多变量影响。我们的结果表明,Aβ纤维化动力学受到pH值和离子强度的强烈影响,这表明静电相互作用在调节Aβ纤维化中的重要性。更有趣的是,锌离子的存在可以进一步改变甚至逆转pH值和离子强度对淀粉样纤维动力学的作用,这表明像组氨酸这样能与锌离子相互作用的氨基酸的重要性。pH值和离子强度都调节二次成核过程,然而,无论pH值和锌离子如何,离子强度也能调节Aβ聚集体的形态。本体溶液中的这些多变量效应为AD大脑中pH值、离子强度或锌离子变化与淀粉样沉积物的相关性提供了见解,并将加深我们对局部大脑微环境中分子病理学的理解。