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与β-淀粉样肽配位的铜离子和锌离子的生物无机化学

Bioinorganic chemistry of copper and zinc ions coordinated to amyloid-beta peptide.

作者信息

Faller Peter, Hureau Christelle

机构信息

Laboratoire de Chimie de Coordination du CNRS and Université Paul Sabatier, 205 Route de Narbonne, 31077, Toulouse Cedex, France.

出版信息

Dalton Trans. 2009 Feb 21(7):1080-94. doi: 10.1039/b813398k. Epub 2008 Nov 26.

Abstract

In the present perspective, we give a critical review on the coordination chemistry of the metal ions copper and zinc to the amyloid-beta (Abeta) peptide; such complexes have been linked to Alzheimer's disease. We focus on two main issues: the identification of the coordination sphere of the Cu(ii) and Zn(ii) ions and the affinity of these metal ions towards the peptide. With the aim to come up with as few as possible valuable structural models and binding affinity values, we critically review the divergent propositions reported in the literature and take into account the experimental differences and the limits of the methods used in the published studies. We propose that: (i) the conditional dissociation constant of the Cu(Abeta) complexes lies in the range of 10 pM to 100 nM, with a preference for the region between 100 pM to 1 nM. (ii) Two most likely coordination modes for the predominant form of the Cu(Abeta) complexes at physiological pH can be retained, both being 3N1O distorted square planar. In the first model, the Cu(ii) ion is coordinated by the Ntau atoms of the three His residues and the carboxylate of the Asp1. In the second model, both the N-terminus and the carboxylate functions of Asp1 are ligated together with the Ntau of His6 and of His13 (or His14). An equilibrium between these two forms at room temperature, and a preferentially freezing out of the second one would explain most of the divergences in the published results (in particular, between those obtained by EPR and NMR). (iii) The apparent dissociation constants of Zn(Abeta) in various buffers are in the range of 1 to 20 muM (a 10 times lower conditional dissociation constant can be estimated. (iv) For the Zn(ii) coordination, the implication of the three His and the Asp1 residues is consensual. The Asp1 can be coordinated by the carboxylate and/or the N-terminus functions. Additional ligands are possible, such as Glu11 or H(2)O.

摘要

从当前的角度出发,我们对金属离子铜和锌与β-淀粉样蛋白(Aβ)肽的配位化学进行了批判性综述;此类配合物与阿尔茨海默病有关。我们关注两个主要问题:Cu(II)和Zn(II)离子配位球的确定以及这些金属离子对该肽的亲和力。为了得出尽可能少的有价值的结构模型和结合亲和力值,我们批判性地回顾了文献中报道的不同观点,并考虑了实验差异以及已发表研究中所用方法的局限性。我们提出:(i)Cu(Aβ)配合物的条件解离常数在10 pM至100 nM范围内,更倾向于100 pM至1 nM之间的区域。(ii)生理pH下Cu(Aβ)配合物主要形式的两种最可能的配位模式可以保留,两者均为3N1O扭曲的平面正方形。在第一个模型中,Cu(II)离子由三个His残基的Nτ原子和Asp1的羧酸盐配位。在第二个模型中,Asp1的N端和羧酸盐官能团与His6和His13(或His14)的Nτ连接在一起。室温下这两种形式之间的平衡,以及第二种形式优先冻结,将解释已发表结果中的大多数差异(特别是通过EPR和NMR获得的结果之间的差异)。(iii)Zn(Aβ)在各种缓冲液中的表观解离常数在1至20 μM范围内(可以估计条件解离常数低10倍)。(iv)对于Zn(II)配位,三个His和Asp1残基的作用是一致的。Asp1可以通过羧酸盐和/或N端官能团配位。其他配体也是可能存在的,例如Glu11或H₂O。

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