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Distinguishing between cooperative and unimodal downhill protein folding

机译:区分合作和单峰下坡蛋白质折叠

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Conventional cooperative protein folding invokes discrete ensembles of native and denatured state structures in separate free-energy wells. Unimodal noncooperative ("downhill") folding, however, proposes an ensemble of states occupying a single free-energy well for proteins folding at >= 4 x 10(4) s(-1) at 298 K. It is difficult to falsify unimodal mechanisms for such fast folding proteins by standard equilibrium experiments because both cooperative and unimodal mechanisms can present the same time-averaged structural, spectroscopic, and thermodynamic properties when the time scale used for observation is longer than for equilibration. However, kinetics can provide the necessary evidence. Chevron plots with strongly sloping linear refolding arms are very difficult to explain by downhill folding and are a signature for cooperative folding via a transition state ensemble. The folding kinetics of the peripheral subunit binding domain POB and its mutants fit to strongly sloping chevrons at observed rate constants of > 6 x 10(4) s(-1) in denaturant solution, extrapolating to 2 x 10(5) s(-1) in water. Protein A, which folds at 105 s-1 at 298 K, also has a well-defined chevron. Single-molecule fluorescence energy transfer experiments on labeled Protein A in the presence of denaturant demonstrated directly bimodal distributions of native and denatured states.
机译:常规的合作蛋白折叠在单独的自由能孔中调用天然和变性状态结构的离散集合。单峰非合作(“下坡”)折叠,但是,提出了一个状态集合,用于在298 K折叠> = 4 x 10(4)s(-1)的蛋白质占据单个自由能阱。很难伪造单峰通过标准的平衡实验,这种快速折叠蛋白质的机理,因为当观察所用的时间尺度长于平衡时,合作和单峰机理都可以表现出相同的时间平均结构,光谱和热力学性质。但是,动力学可以提供必要的证据。具有强烈倾斜的线性折叠臂的人字形图很难通过下坡折叠来解释,并且是通过过渡状态集合进行协同折叠的标志。外围亚基结合域POB及其突变体的折叠动力学适合于在倾斜溶液中观察到的速率常数> 6 x 10(4)s(-1)的强倾斜V形,外推至2 x 10(5)s(- 1)在水中。在298 K下以105 s-1折叠的蛋白质A也具有明确的人字形。在存在变性剂的情况下,对标记的蛋白A进行的单分子荧光能量转移实验证明了天然和变性状态的直接双峰分布。

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