Institute for Research in Biomedicine, c/ Baldiri Reixac, Barcelona, Spain.
Biophys J. 2009 Nov 18;97(10):2839-45. doi: 10.1016/j.bpj.2009.08.044.
Characterization of the conformational properties of unfolded proteins is essential for understanding the mechanisms of protein folding and misfolding. This information is also fundamental to determining the relationship between flexibility and function in the highly diverse families of intrinsically disordered proteins. Here we present a self-consistent model of conformational sampling of chemically denatured proteins in agreement with experimental data reporting on long-range distance distributions in unfolded proteins using small-angle x-ray scattering and nuclear magnetic resonance pulse-field gradient-based measurements. We find that standard statistical coil models, selected from folded protein databases with secondary structural elements removed, need to be refined to correct backbone dihedral angle sampling of denatured proteins, although they appear to be appropriate for intrinsically disordered proteins. For denatured proteins, pervasive increases in the sampling of more-extended regions of Ramachandran space {50 degrees <psi < 180 degrees} throughout the peptide chain are found to be consistent with all experimental data. These observations are in agreement with previous conclusions derived from short-range nuclear magnetic resonance data from residual dipolar couplings, leading the way to a self-consistent description of denatured chains that is in agreement with short- and long-range data measured using both spectroscopic and scattering techniques.
阐明无规伸展蛋白质的构象特性对于理解蛋白质折叠和错误折叠的机制至关重要。这些信息对于确定高度多样化的无规卷曲蛋白质家族中柔韧性与功能之间的关系也是至关重要的。在此,我们提出了一种化学变性蛋白质构象采样的自洽模型,该模型与使用小角度 X 射线散射和基于核磁共振脉冲梯度测量来报告无规伸展蛋白质中长程距离分布的实验数据相符。我们发现,尽管标准的统计线圈模型似乎适用于无规卷曲蛋白质,但需要对其进行改进,以纠正去折叠蛋白质的主链二面角采样,这些模型是从去除二级结构元件的折叠蛋白数据库中选择的。对于去折叠蛋白质,在整个肽链中,发现对 Ramachandran 空间中更伸展区域({50 度 < psi < 180 度})的采样普遍增加,这与所有实验数据相符。这些观察结果与先前从残余偶极耦合的短程核磁共振数据中得出的结论一致,为使用光谱学和散射技术测量的短程和长程数据提供了一致的去折叠链描述方法。