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Solvation in protein folding analysis: Combination of theoretical and experimental approaches

机译:蛋白质折叠分析中的溶剂化:理论和实验方法的结合

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摘要

An effort to combine theoretical analyses and protein engineering methods has been made to probe the folding mechanism of SH3 by using Energy Landscape Theory and a φ-value analysis. Particular emphasis was given to core residues and the effect of desolvation during the folding event by replacing the core valines with isosteric threonines. These mutations have the advantage of keeping the core structurally invariant while affecting core stability relative to the unfolded state. Although the valines that form the core appear spatially invariant, the folding kinetics of their threonine mutants varies, indicating their different extent of solvation in the transition-state ensemble. Theoretical studies predicted the distribution of folding kinetics of threonine mutants without previous knowledge of the measured rates. This initial success encourages further investigations of the molecular details behind these macroscopic phenomena and of the role of solvation in the folding mechanism.
机译:已经尝试将理论分析和蛋白质工程方法相结合,以利用能量景观理论和φ值分析来探索SH3的折叠机制。特别强调了核心残基和折叠过程中的去溶剂化作用,方法是用等位苏氨酸替代核心缬氨酸。这些突变的优点是保持核心结构不变,同时影响核心相对于未折叠状态的稳定性。尽管形成核心的缬氨酸在空间上是不变的,但其苏氨酸突变体的折叠动力学却有所不同,表明它们在过渡态集合体中的溶剂化程度不同。理论研究预测了苏氨酸突变体折叠动力学的分布,而无需事先了解测量速率。最初的成功鼓励人们进一步研究这些宏观现象背后的分子细节,以及溶剂化在折叠机制中的作用。

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