Department of Physics, Emory University, Atlanta, GA 30322-2430 (USA).
Chembiochem. 2013 Sep 23;14(14):1762-71. doi: 10.1002/cbic.201300236. Epub 2013 Sep 6.
Truncated and mutated amyloid-β (Aβ) peptides are models for systematic study-in homogeneous preparations-of the molecular origins of metal ion effects on Aβ aggregation rates, types of aggregate structures formed, and cytotoxicity. The 3D geometry of bis-histidine imidazole coordination of Cu(II) in fibrils of the nonapetide acetyl-Aβ(13-21)H14A has been determined by powder (14) N electron spin echo envelope modulation (ESEEM) spectroscopy. The method of simulation of the anisotropic combination modulation is described and benchmarked for a Cu(II) -bis-cis-imidazole complex of known structure. The revealed bis-cis coordination mode, and the mutual orientation of the imidazole rings, for Cu(II) in Ac-Aβ(13-21)H14A fibrils are consistent with the proposed β-sheet structural model and pairwise peptide interaction with Cu(II) , with an alternating [-metal-vacancy-]n pattern, along the N-terminal edge. Metal coordination does not significantly distort the intra-β-strand peptide interactions, which provides a possible explanation for the acceleration of Ac-Aβ(13-21)H14A fibrillization by Cu(II) , through stabilization of the associated state and low-reorganization integration of β-strand peptide pair precursors.
截短和突变的淀粉样蛋白-β (Aβ) 肽是系统研究金属离子对 Aβ 聚集速率、聚集结构类型和细胞毒性影响的分子起源的均一制剂的模型。通过粉末(14)N 电子自旋回波包络调制(ESEEM)光谱法确定了非肽乙酰-Aβ(13-21)H14A 纤维中二价铜离子的双组氨酸咪唑配位的 3D 几何形状。描述了各向异性组合调制模拟的方法,并对具有已知结构的 Cu(II)-双顺式-咪唑配合物进行了基准测试。所揭示的 Cu(II)在 Ac-Aβ(13-21)H14A 纤维中的双顺式配位模式,以及咪唑环的相互取向,与提出的β-折叠结构模型和与 Cu(II)的肽相互作用一致,沿 N 端边缘呈交替[-金属空位-n]模式。金属配位不会显著扭曲肽内β-链间相互作用,这为 Cu(II)通过稳定相关状态和低重组整合β-链肽对前体来加速 Ac-Aβ(13-21)H14A 纤维化提供了可能的解释。