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阿尔茨海默病的β-淀粉样肽在一个线性双组氨酸配位环境中结合Cu(I):对β-淀粉样肽可能的神经保护机制的深入了解。

The amyloid-beta peptide of Alzheimer's disease binds Cu(I) in a linear bis-his coordination environment: insight into a possible neuroprotective mechanism for the amyloid-beta peptide.

作者信息

Shearer Jason, Szalai Veronika A

机构信息

Department of Chemistry/216, University of NevadaReno, 1664 North Virginia Street, Reno, Nevada 89557, USA.

出版信息

J Am Chem Soc. 2008 Dec 31;130(52):17826-35. doi: 10.1021/ja805940m.

Abstract

Oxidative stress has been suggested to contribute to neuronal apoptosis associated with Alzheimer's disease (AD). Copper may participate in oxidative stress through redox-cycling between its +2 and +1 oxidation states to generate reactive oxygen species (ROS). In vitro, copper binds to the amyloid-beta peptide of AD, and in vivo, copper is associated with amyloid plaques characteristic of AD. As a result, the AbetaCu(I) complex may be a critical reactant involved in ROS associated with AD etiology. To characterize the AbetaCu(I) complex, we have pursued X-ray absorption (XAS) and electron paramagnetic resonance (EPR) spectroscopy of AbetaCu(II) and AbetaCu(I) (produced by ascorbate reduction of AbetaCu(II)). The AbetaCu(II) complex Cu K-edge XAS spectrum is indicative of a square-planar Cu(II) center with mixed N/O ligation. Multiple scattering analysis of the extended X-ray absorption fine structure (EXAFS) data for AbetaCu(II) indicates that two of the ligands are imidazole groups of histidine ligands, indicating a (N(Im))(2)(N/O)(2) Cu(II) ligation sphere for AbetaCu(II). After reduction of the AbetaCu(II) complex with ascorbate, the edge region decreases in energy by approximately 4 eV. The X-ray absorption near-edge spectrum region of AbetaCu(I) displays an intense pre-edge feature at 8984.1(2) eV. EXAFS data fitting yielded a two-coordinate geometry, with two imidazole ligands coordinated to Cu(I) at 1.877(2) A in a linear geometry. Ascorbate reduction of AbetaCu(II) under inert atmosphere and subsequent air oxidation of AbetaCu(I) to regenerate AbetaCu(II) was monitored by low-temperature EPR spectroscopy. Slow reappearance of the AbetaCu(II) EPR signal indicates that O(2) oxidation of the AbetaCu(I) complex is kinetically sluggish and Abeta damage is occurring following reoxidation of AbetaCu(I) by O(2). Together, these results lead us to hypothesize that Cu(I) is ligated by His13 and His14 in a linear coordination environment in Alphabeta, that Abeta may be playing a neuroprotective role, and that metal-mediated oxidative damage of Abeta occurs over multiple redox cycles.

摘要

氧化应激被认为与阿尔茨海默病(AD)相关的神经元凋亡有关。铜可能通过其+2和+1氧化态之间的氧化还原循环参与氧化应激,从而产生活性氧(ROS)。在体外,铜与AD的β-淀粉样肽结合,在体内,铜与AD特有的淀粉样斑块相关。因此,β-淀粉样肽铜(I)复合物可能是参与与AD病因相关的ROS的关键反应物。为了表征β-淀粉样肽铜(I)复合物,我们对β-淀粉样肽铜(II)和β-淀粉样肽铜(I)(由抗坏血酸还原β-淀粉样肽铜(II)产生)进行了X射线吸收(XAS)和电子顺磁共振(EPR)光谱分析。β-淀粉样肽铜(II)复合物的Cu K边XAS光谱表明存在一个具有混合N/O配位的平面正方形Cu(II)中心。对β-淀粉样肽铜(II)的扩展X射线吸收精细结构(EXAFS)数据进行的多重散射分析表明,其中两个配体是组氨酸配体的咪唑基团,这表明β-淀粉样肽铜(II)的配位球为(N(Im))(2)(N/O)(2)Cu(II)。用抗坏血酸还原β-淀粉样肽铜(II)复合物后,边缘区域的能量降低了约4 eV。β-淀粉样肽铜(I)的X射线吸收近边光谱区域在8984.1(2)eV处显示出强烈的前缘特征。EXAFS数据拟合得到一种双配位几何结构,两个咪唑配体以线性几何结构在1.877(2)Å处与Cu(I)配位。在惰性气氛下用抗坏血酸还原β-淀粉样肽铜(II),随后将β-淀粉样肽铜(I)空气氧化以再生β-淀粉样肽铜(II),通过低温EPR光谱进行监测。β-淀粉样肽铜(II)EPR信号的缓慢重新出现表明,β-淀粉样肽铜(I)复合物被O(2)氧化在动力学上较为缓慢,并且在β-淀粉样肽铜(I)被O(2)再氧化后发生了β-淀粉样肽损伤。总之,这些结果使我们推测,在αβ中,Cu(I)在His13和His14的线性配位环境中配位,β-淀粉样肽可能发挥神经保护作用,并且β-淀粉样肽的金属介导氧化损伤发生在多个氧化还原循环中。

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