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NMR spectroscopic characterization of millisecond protein folding by transverse relaxation dispersion measurements

机译:通过横向弛豫弥散测量的毫秒级蛋白质折叠的NMR光谱表征

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摘要

The cold shock protein CspB adopts its native and functional tertiary structure on the millisecond time scale. We employed transverse relaxation NMR methods, which allow a quantitative measurement of the cooperativity of this fast folding reaction on a residue basis. Thereby, chemical exchange contributions to the transverse relaxation rate (R-2) were observed for every residue of CspB verifying the potential of this method to identify not only local dynamics but also to characterize global events. Toward this end, the homogeneity of the transition state of folding was probed by comparing Chevron plots (i.e., dependence of the apparent folding rate on the denaturant concentration) determined by stopped-flow fluorescence with Chevron plots of six residues acquired by R-2 dispersion experiments. The coinciding results obtained for probes at different locations in the three-dimensional structure of CspB indicate the ability and significance of transverse relaxation NMR to determine Chevron plots on a residue-by-residue basis providing detailed insights on the nature of the transition state of folding.
机译:冷激蛋白CspB在毫秒级上采用其天然的和功能性的三级结构。我们采用了横向弛豫NMR方法,该方法可以定量测量此快速折叠反应在残基基础上的协同作用。因此,对于CspB的每个残基,观察到化学交换对横向弛豫速率(R-2)的贡献,从而证明了该方法不仅可以识别局部动力学,而且可以表征全局事件。为此,通过比较由停止流荧光法测定的雪佛龙图(与表观折叠速率对变性剂浓度的依赖性)和由R-2分散液获得的六个残基的雪佛龙图,探索了折叠过渡态的均匀性。实验。在CspB三维结构中不同位置的探针获得的一致结果表明,横向弛豫NMR在逐个残基的基础上确定Chevron图的能力和重要性,提供了有关折叠过渡态性质的详细见解。

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