CEA, Institut de Biologie Structurale Jean-Pierre Ebel, 41 Rue Jules Horowitz, Grenoble 38027, France.
J Am Chem Soc. 2012 Mar 7;134(9):4429-36. doi: 10.1021/ja2118688. Epub 2012 Feb 22.
The molecular details of how urea interacts with, and eventually denatures proteins, remain largely unknown. In this study we have used extensive experimental NMR data, in combination with statistical coil ensemble modeling and small-angle scattering, to analyze the conformational behavior of the protein ubiquitin in the presence of urea. In order to develop an atomic resolution understanding of the denatured state, conformational ensembles of full-atom descriptions of unfolded proteins, including side chain conformations derived from rotamer libraries, are combined with random sampling of explicit urea molecules in interaction with the protein. Using this description of the conformational equilibrium, we demonstrate that the direct-binding model of urea to the protein backbone is compatible with available experimental data. We find that, in the presence of 8 M urea, between 30 and 40% of the backbone peptide groups bind a urea molecule, independently reproducing results from a model-free analysis of small-angle neutron and X-ray scattering data. Crucially, this analysis also provides sequence specific details of the interaction between urea and the protein backbone. The pattern of urea-binding along the amino-acid sequence reveals a higher level of binding in the central part of the protein, a trend which resembles independent results derived from chemical shift mapping of the urea-protein interaction. Together these results substantiate the direct-binding model and provide a framework for studying the physical basis of interactions between proteins and solvent molecules.
尿素与蛋白质相互作用并最终使蛋白质变性的分子细节在很大程度上仍然未知。在这项研究中,我们使用了广泛的实验 NMR 数据,结合统计线圈整体模型和小角散射,来分析在尿素存在下蛋白质泛素的构象行为。为了从原子分辨率理解变性状态,我们将包括来自构象文库的侧链构象在内的展开蛋白质的全原子描述的构象集合与与蛋白质相互作用的显式尿素分子的随机抽样相结合。使用这种构象平衡的描述,我们证明了尿素与蛋白质主链的直接结合模型与可用的实验数据是一致的。我们发现,在 8 M 尿素存在下,蛋白质的 30%到 40%的肽段会结合一个尿素分子,这独立于小角中子和 X 射线散射数据的无模型分析结果。至关重要的是,这种分析还提供了尿素与蛋白质主链之间相互作用的序列特异性细节。沿氨基酸序列的尿素结合模式显示出蛋白质中央部分更高的结合水平,这种趋势类似于从尿素-蛋白质相互作用的化学位移映射中得出的独立结果。这些结果共同证实了直接结合模型,并为研究蛋白质与溶剂分子之间相互作用的物理基础提供了框架。