Cheignon Clémence, Collin Fabrice, Sabater Laurent, Hureau Christelle
LCC-CNRS, Université de Toulouse, CNRS, 31077 Toulouse, France.
Antioxidants (Basel). 2023 Feb 13;12(2):472. doi: 10.3390/antiox12020472.
Oxidative stress that can lead to oxidation of the amyloid-β (Aβ) peptide is considered a key feature in Alzheimer's disease (AD), influencing the ability of Aβ to assemble into β-sheet rich fibrils that are commonly found in senile plaques of AD patients. The present study aims at investigating the fallouts of Aβ oxidation on the assembly properties of the Aβ peptide. To accomplish this, we performed kinetics and analysis on an oxidized Aβ (Aβ) peptide, resulting from the attack of reactive oxygen species (ROS) that are formed by the biologically relevant Cu/Aβ/dioxygen/ascorbate system. Aβ was still able to assemble but displayed ill-defined and small oligomeric assemblies compared to the long and thick β-sheet rich fibrils from the non-oxidized counterpart. In addition, Aβ does affect the assembly of the parent Aβ peptide. In a mixture of the two peptides, Aβ has a mainly kinetic effect on the assembly of the Aβ peptide and was able to slow down the formation of Aβ fibril in a wide pH range [6.0-7.4]. However, Aβ does not change the quantity and morphology of the Aβ fibrils formed to a significant extent. In the presence of copper or zinc di-cations, Aβ assembled into weakly-structured aggregates rather than short, untangled Cu-Aβ fibrils and long untangled Zn-Aβ fibrils. The delaying effect of Aβ on metal altered Aβ assembly was also observed. Hence, our results obtained here bring new insights regarding the tight interconnection between (i) ROS production leading to Aβ oxidation and (ii) Aβ assembly, in particular via the modulation of the Aβ assembly by Aβ. It is the first time that co-assembly of Aβ and Aβ under various environmental conditions (pH, metal ions …) are reported.
可导致淀粉样β蛋白(Aβ)肽氧化的氧化应激被认为是阿尔茨海默病(AD)的一个关键特征,它影响Aβ组装成富含β折叠的纤维的能力,这种纤维常见于AD患者的老年斑中。本研究旨在探究Aβ氧化对Aβ肽组装特性的影响。为实现这一目标,我们对一种氧化型Aβ(Aβ)肽进行了动力学研究和分析,该肽是由生物相关的铜/Aβ/双氧/抗坏血酸系统产生的活性氧(ROS)攻击形成的。与未氧化的对应物形成的长而粗的富含β折叠的纤维相比,Aβ仍能组装,但呈现出不明确且小的寡聚体组装。此外,Aβ确实会影响亲本Aβ肽的组装。在两种肽的混合物中,Aβ对Aβ肽的组装主要具有动力学效应,并且能够在较宽的pH范围[6.0 - 7.4]内减缓Aβ纤维的形成。然而,Aβ在很大程度上不会改变所形成的Aβ纤维的数量和形态。在铜或锌二价阳离子存在的情况下,Aβ组装成结构松散的聚集体,而不是短的、未缠结的铜 - Aβ纤维和长的、未缠结的锌 - Aβ纤维。还观察到Aβ对金属改变的Aβ组装的延迟效应。因此,我们在此获得的结果为以下两者之间的紧密联系带来了新的见解:(i)导致Aβ氧化的ROS产生与(ii)Aβ组装,特别是通过Aβ对Aβ组装的调节。这是首次报道在各种环境条件(pH、金属离子等)下Aβ和Aβ的共组装。