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从头设计的ccβ-甲硫氨酸淀粉样纤维的原子模型。

Atomic models of de novo designed cc beta-Met amyloid-like fibrils.

作者信息

Steinmetz Michel O, Gattin Zrinka, Verel Rene, Ciani Barbara, Stromer Thusnelda, Green Janelle M, Tittmann Peter, Schulze-Briese Clemens, Gross Heinz, van Gunsteren Wilfred F, Meier Beat H, Serpell Louise C, Müller Shirley A, Kammerer Richard A

机构信息

Biomolecular Research, Structural Biology, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.

出版信息

J Mol Biol. 2008 Feb 22;376(3):898-912. doi: 10.1016/j.jmb.2007.11.100. Epub 2007 Dec 5.

Abstract

The common characteristics of amyloid and amyloid-like fibrils from disease- and non-disease-associated proteins offer the prospect that well-defined model systems can be used to systematically dissect the driving forces of amyloid formation. We recently reported the de novo designed cc beta peptide model system that forms a native-like coiled-coil structure at low temperatures and which can be switched to amyloid-like fibrils by increasing the temperature. Here, we report a detailed molecular description of the system in its fibrillar state by characterizing the cc beta-Met variant using several microscopic techniques, circular dichroism spectroscopy, X-ray fiber diffraction, solid-state nuclear magnetic resonance, and molecular dynamics calculations. We show that cc beta-Met forms amyloid-like fibrils of different morphologies on both the macroscopic and atomic levels, which can be controlled by variations of assembly conditions. Interestingly, heterogeneity is also observed along single fibrils. We propose atomic models of the cc beta-Met amyloid-like fibril, which are in good agreement with all experimental data. The models provide a rational explanation why oxidation of methionine residues completely abolishes cc beta-Met amyloid fibril formation, indicating that a small number of site-specific hydrophobic interactions can play a major role in the packing of polypeptide-chain segments within amyloid fibrils. The detailed structural information available for the cc beta model system provides a strong molecular basis for understanding the influence and relative contribution of hydrophobic interactions on native-state stability, kinetics of fibril formation, fibril packing, and polymorphism.

摘要

来自疾病相关和非疾病相关蛋白质的淀粉样蛋白及类淀粉样纤维的共同特征表明,有望利用定义明确的模型系统来系统剖析淀粉样蛋白形成的驱动力。我们最近报道了一种从头设计的ccβ肽模型系统,该系统在低温下形成类似天然的卷曲螺旋结构,并且可以通过升高温度转变为类淀粉样纤维。在此,我们通过使用多种显微镜技术、圆二色光谱、X射线纤维衍射、固态核磁共振和分子动力学计算对ccβ-Met变体进行表征,报告了该系统在其纤维状态下的详细分子描述。我们表明,ccβ-Met在宏观和原子水平上均形成不同形态的类淀粉样纤维,这可以通过组装条件的变化来控制。有趣的是,在单根纤维上也观察到了异质性。我们提出了ccβ-Met类淀粉样纤维的原子模型,该模型与所有实验数据高度吻合。这些模型合理地解释了甲硫氨酸残基的氧化为何会完全消除ccβ-Met淀粉样纤维的形成,表明少数位点特异性疏水相互作用在淀粉样纤维内多肽链段的堆积中可能起主要作用。ccβ模型系统可获得的详细结构信息为理解疏水相互作用对天然态稳定性、纤维形成动力学、纤维堆积和多态性的影响及相对贡献提供了有力的分子基础。

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