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β-淀粉样蛋白在单核金属离子结合位点结合铜离子(Cu2+)。

Amyloid-beta binds Cu2+ in a mononuclear metal ion binding site.

作者信息

Karr Jesse W, Kaupp Lauren J, Szalai Veronika A

机构信息

Department of Chemistry & Biochemistry, University of Maryland, Baltimore County, 1000 Hilltop Circle, Baltimore, Maryland 21250, USA.

出版信息

J Am Chem Soc. 2004 Oct 20;126(41):13534-8. doi: 10.1021/ja0488028.

Abstract

Amyloid-beta (Abeta) peptide is the principal constituent of plaques associated with Alzheimer's disease and is thought to be responsible for the neurotoxicity associated with the disease. Metal ions have been hypothesized to play a role in the formation and neurotoxicity of aggregates associated with Alzheimer's disease (Bush, A. I.; et al. Proc. Natl. Acad. Sci. U.S.A. 2003, 100, 11934). Elucidation of the chemistry through which transition-metal ions participate in the assembly and toxicity of Abeta oligomers is important to drug design efforts if inhibition of Abeta containing bound metal ions becomes a treatment for Alzheimer's disease. In this paper, we report electron paramagnetic resonance (EPR) spectroscopic characterization of Cu(2+) bound to soluble and fibrillar Abeta. Addition of stoichiometric amounts of Cu(2+) to soluble Abeta produces an EPR signal at 10 K with observable Cu(2+) hyperfine lines. A nearly identical spectrum is observed for Abetafibrils assembled in the presence of Cu(2+). The EPR parameters are consistent with a Type 2 Cu(2+) center with three nitrogen donor atoms and one oxygen donor atom in the coordination sphere of Cu(2+): g( parallel) = 2.26 and A( parallel) = 174 +/- 4 G for soluble Abeta with Cu(2+), and g( parallel) = 2.26 and A( parallel) = 175 +/- 1 G for Abeta fibrils assembled with Cu(2+). Investigation of the temperature dependence of the EPR signal for Cu(2+) bound to soluble Abetaor Cu(2+) in fibrillar Abeta shows that the Cu(2+) center displays normal Curie behavior, indicating that the site is a mononuclear Cu(2+) site. Fibrils assembled in the presence of Cu(2+) contain one Cu(2+) ion per peptide. These results show that the ligand donor atom set to Cu(2+) does not change during organization of Abetamonomers into fibrils and that neither soluble nor fibrillar forms of Abeta(1-40) with Cu(2+) contain antiferromagnetically exchange-coupled binuclear Cu(2+) sites in which two Cu(2+) ions are bridged by an intervening ligand.

摘要

β-淀粉样蛋白(Aβ)肽是与阿尔茨海默病相关的斑块的主要成分,被认为是该疾病相关神经毒性的原因。金属离子被假定在与阿尔茨海默病相关的聚集体的形成和神经毒性中起作用(布什,A.I.等人,《美国国家科学院院刊》,2003年,100,11934)。如果抑制含有结合金属离子的Aβ成为治疗阿尔茨海默病的方法,那么阐明过渡金属离子参与Aβ寡聚体组装和毒性的化学过程对于药物设计工作很重要。在本文中我们报告了与可溶性和纤维状Aβ结合的Cu(2+)的电子顺磁共振(EPR)光谱表征。向可溶性Aβ中加入化学计量的Cu(2+)会在10K时产生一个具有可观测的Cu(2+)超精细谱线的EPR信号。在Cu(2+)存在下组装的Aβ纤维也观察到几乎相同的光谱。EPR参数与在Cu(2+)的配位球中有三个氮供体原子和一个氧供体原子的2型Cu(2+)中心一致:对于与Cu(2+)结合的可溶性Aβ,g(平行)=2.26且A(平行)=174±4G;对于与Cu(2+)组装的Aβ纤维,g(平行)=2.26且A(平行)=175±1G。对与可溶性Aβ结合的Cu(2+)或纤维状Aβ中的Cu(2+)的EPR信号的温度依赖性研究表明,Cu(2+)中心表现出正常的居里行为,表明该位点是单核Cu(2+)位点。在Cu(2+)存在下组装的纤维每肽含有一个Cu(2+)离子。这些结果表明,在Aβ单体组装成纤维的过程中,与Cu(2+)的配体供体原子集不变,并且含有Cu(2+)的可溶性或纤维状形式的Aβ(1 - 40)都不包含反铁磁交换耦合的双核Cu(2+)位点,其中两个Cu(2+)离子由一个中间配体桥接。

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