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Optimal combination of theory and experiment for the characterization of the protein folding landscape of s6: how far can a minimalist model go?

机译:理论和实验的最佳组合,用于表征s6的蛋白质折叠态:极简主义模型能走多远?

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The detailed characterization of the overall free energy landscape associated with the folding process of a protein is the ultimate goal in protein folding studies. Modern experimental techniques provide accurate thermodynamic and kinetic measurements on restricted regions of a protein landscape. Although simplified protein models can access larger regions of the landscape, they are oftentimes built on assumptions and approximations that affect the accuracy of the results. We present a new methodology that allows to combine the complementary strengths of theory and experiment for a more complete characterization of a protein folding landscape. We prove that this new procedure allows a simplified protein model to reproduce remarkably well (correlation coefficient >0.9) all experimental data available on free energies differences upon single mutations for S6 ribosomal protein and two circular permutants. Our results confirm and quantify the hypothesis, recently formulated on the basis of experimental data, that the folding landscape of protein S6 is strongly affected by an atypical distribution of contact energies.
机译:与蛋白质折叠过程相关的整体自由能态的详细表征是蛋白质折叠研究的最终目标。现代实验技术可对蛋白质景观的受限区域提供准确的热力学和动力学测量。尽管简化的蛋白质模型可以访问更大范围的景观,但是它们通常是基于会影响结果准确性的假设和近似值构建的。我们提出了一种新的方法,可以结合理论和实验的互补优势,对蛋白质折叠态进行更完整的表征。我们证明了这种新方法使简化的蛋白质模型能够很好地重现(相关系数> 0.9)所有有关S6核糖体蛋白和两个环状置换子单突变的自由能差异的实验数据。我们的结果证实并量化了根据实验数据最近提出的假设,即蛋白质S6的折叠态受到接触能非典型分布的强烈影响。

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