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Scope and utility of hydrogen exchange as a tool for mapping landscapes.

机译:氢交换作为绘制地形图的工具的范围和实用性。

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摘要

The ability to determine conformational parameters of protein-folding landscapes is critical for understanding the link between conformation, function, and disease. Monitoring hydrogen exchange (HX) of labile protons at equilibrium enables direct extraction of thermodynamic or kinetic landscape parameters in two limiting extremes. Here, we establish a quantitative framework for relating HX behavior to landscape. We use this framework to demonstrate that the range of predicted global HX behavior for the majority of a set of characterized two-state proteins under near-native conditions does not readily span between both extremes. For most, stability may be quantitatively determined under physiological conditions, with semiquantitative boundaries on kinetics additionally determined using modest experimental perturbations to shift HX behavior. The framework and relationships derived in the simple context of two-state global folding highlight the importance of understanding HX across the entire continuum ofbehavior, in order to apply HX to map landscapes.
机译:确定蛋白折叠态构象参数的能力对于理解构象,功能和疾病之间的联系至关重要。在平衡状态下监测不稳定质子的氢交换(HX),可以在两个极限极端条件下直接提取热力学或动力学景观参数。在这里,我们建立了将HX行为与景观相关联的定量框架。我们使用此框架来证明,在接近自然条件下,大多数表征的两种状态蛋白质的大多数预测的全球HX行为的范围不容易跨越两个极端。大多数情况下,可以在生理条件下定量确定稳定性,同时使用适度的实验扰动改变HX行为来确定动力学的半定量边界。在二态全局折叠的简单上下文中派生的框架和关系强调了在行为的整个连续过程中理解HX的重要性,以便将HX应用于地形图。

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