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Mutational investigation of protein folding transition states by Phi-value analysis and beyond: lessons from SH3 domain folding.

机译:通过Phi值分析和其他方法对蛋白质折叠过渡态进行突变研究:SH3结构域折叠的经验教训。

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摘要

Understanding how proteins adopt their unique native structures requires a complete structural characterization of the rate-limiting transition state(s) along the folding pathway. By definition, transition states are not significantly populated and are only accessible via folding kinetics studies. In this respect, interpreting the kinetic effects of amino acid substitutions (especially to Ala) via Phi-value analysis is the most common method to probe the structure of these transient, yet important states. A critical review of the key assumptions required for rigorous interpretation of Phi values reveals that a multiple substitution strategy in which a position of interest is mutated to a variety of amino acids, and not exclusively to Ala, provides the best means to characterize folding transition states. This approach has proven useful in revealing non-native interactions and (or) conformations in folding transition states. Moreover, by simultaneously examining the folding kinetics of multiple substitutions made at a single surface-exposed position using the Bronsted analysis the backbone conformation in a folding transition state can be investigated. For folding equilibria with exchange rates on the order of milliseconds, the kinetic parameters for Phi-value analysis can be obtained from NMR relaxation dispersion experiments, under fully native conditions, along with a wealth of high-resolution structural information about the states in exchange (native, denatured, and intermediate states that populate the pathway). This additional structural information, which is not readily obtained through stopped-flow based methods, can significantly facilitate the interpretation of Phi values because it often reports on the validity of the assumptions required for a rigorous interpretation of Phi values.
机译:要了解蛋白质如何采用其独特的天然结构,就需要对沿折叠路径的限速过渡态进行完整的结构表征。根据定义,过渡态不会显着填充,只能通过折叠动力学研究获得。在这方面,通过Phi值分析解释氨基酸取代(尤其是Ala)的动力学效应是探测这些瞬态但重要状态的结构的最常用方法。对严格解释Phi值所需的关键假设进行的严格审查显示,多重取代策略(其中感兴趣的位置突变为多种氨基酸而不是Ala突变)提供了表征折叠过渡态的最佳方法。事实证明,这种方法在揭示折叠过渡态中的非天然相互作用和(或)构象方面很有用。此外,通过使用布朗斯台德分析同时检查在单个表面暴露位置进行的多个取代的折叠动力学,可以研究处于折叠过渡态的骨架构象。对于交换速率为毫秒量级的折叠平衡,可以在完全天然条件下通过NMR弛豫分散实验获得有关Phi值分析的动力学参数,以及有关交换状态的大量高分辨率结构信息(天然,变性和中间状态填充该途径)。通过基于停流的方法不易获得的这种附加结构信息可以极大地促进对Phi值的解释,因为它经常报告严格解释Phi值所需的假设的有效性。

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