首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Simulation, experiment, and evolution: Understanding nucleation in protein S6 folding.
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Simulation, experiment, and evolution: Understanding nucleation in protein S6 folding.

机译:模拟,实验和演进:了解蛋白质S6折叠中的成核作用。

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摘要

In this study, we explore nucleation and the transition state ensemble of the ribosomal protein S6 using a Monte Carlo (MC) Go model in conjunction with restraints from experiment. The results are analyzed in the context of extensive experimental and evolutionary data. The roles of individual residues in the folding nucleus are identified, and the order of events in the S6 folding mechanism is explored in detail. Interpretation of our results agrees with, and extends the utility of, experiments that shift -values by modulating denaturant concentration and presents strong evidence for the realism of the mechanistic details in our MC Go model and the structural interpretation of experimental -values. We also observe plasticity in the contacts of the hydrophobic core that support the specific nucleus. For S6, which binds to RNA and protein after folding, this plasticity may result from the conformational flexibility required to achieve biological function. These results present a theoretical and conceptual picture that is relevant in understanding the mechanism of nucleation in protein folding.
机译:在这项研究中,我们结合蒙特卡罗(MC)Go模型并结合实验中的限制条件,探索了核糖体蛋白S6的成核和过渡态整体。在广泛的实验和进化数据的背景下分析结果。确定了单个残基在折叠核中的作用,并详细探讨了S6折叠机制中事件的顺序。我们对结果的解释与通过调节变性剂浓度改变值的实验相吻合,并扩展了其用途,并为MC Go模型中机械细节的真实性和实验值的结构解释提供了有力的证据。我们还观察到疏水核支持特定核的接触中的可塑性。对于折叠后与RNA和蛋白质结合的S6,这种可塑性可能来自于实现生物学功能所需的构象柔韧性。这些结果提供了理论和概念图,与理解蛋白质折叠中的成核机理有关。

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