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Electrochemical and homogeneous electron transfers to the Alzheimer amyloid-β copper complex follow a preorganization mechanism

机译:电化学和均质电子转移到Alzheimer淀粉样蛋白-β铜配合物遵循预组织机制

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摘要

Deciphering the electron transfer reactivity characteristics of amyloid β-peptide copper complexes is an important task in connection with the role they are assumed to play in Alzheimer’s disease. A systematic analysis of this question with the example of the amyloid β-peptide copper complex by means of its electrochemical current–potential responses and of its homogenous reactions with electrogenerated fast electron exchanging osmium complexes revealed a quite peculiar mechanism: The reaction proceeds through a small fraction of the complex molecules in which the peptide complex is “preorganized” so as the distances and angles in the coordination sphere to vary minimally upon electron transfer, thus involving a remarkably small reorganization energy (0.3 eV). This preorganization mechanism and its consequences on the reactivity should be taken into account for reactions involving dioxygen and hydrogen peroxide that are considered to be important in Alzheimer’s disease through the production of harmful reactive oxygen species.
机译:推测淀粉样β肽铜络合物的电子转移反应性特征是一项重要任务,与假定它们在阿尔茨海默氏病中的作用有关。通过淀粉样β-肽铜络合物的电化学电流-电势响应及其与电生成的快速电子交换络合物的均相反应,对该问题进行系统的分析,发现了一个相当奇特的机理:该反应通过一个很小的过程进行肽复合物被“预组织”的复合物分子的一部分,因此配位球中的距离和角度在电子转移时变化最小,因此重组能量非常小(0.3 eV)。对于涉及双氧和过氧化氢的反应,应该考虑到这种预组织机制及其对反应性的影响,这些反应被认为通过产生有害的活性氧而在阿尔茨海默氏病中很重要。

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