首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Application of physical organic chemistry to engineered mutants of proteins: Hammond postulate behavior in the transition state of protein folding.
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Application of physical organic chemistry to engineered mutants of proteins: Hammond postulate behavior in the transition state of protein folding.

机译:物理有机化学在蛋白质工程突变体中的应用:Hammond假定蛋白质折叠过渡态的行为。

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摘要

Transition states in protein folding may be analyzed by linear free-energy relationships (LFERs) analogous to the Brønsted equation for changes in reactivity with changes in structure. There is an additional source of LFERs in protein folding: the perturbation of the equilibrium and rate constants by denaturants. These LFERs give a measure of the position of the transition state along the reaction coordinate. The transition state for folding/unfolding of barnase has been analyzed by both types of LFERs: changing the structure by protein engineering and perturbation by denaturants. The combination has allowed the direct monitoring of Hammond postulate behavior of the transition state on the reaction pathway. Movement of the transition state has been found and analyzed to give further details of the order of events in protein folding.
机译:可以通过类似于Brønsted方程的线性自由能关系(LFER)分析蛋白质折叠中的过渡态,以了解反应性随结构的变化。 LFERs在蛋白质折叠中还有另外一个来源:变性剂对平衡和速率常数的扰动。这些LFER给出了沿反应坐标的过渡态位置的度量。两种类型的LFERs都分析了barnase折叠/解折叠的过渡状态:通过蛋白质工程改变结构,并通过变性剂扰动。该组合允许直接监测反应路径上过渡态的Hammond假定行为。已经发现并分析了过渡态的运动,以给出蛋白质折叠中事件顺序的更多细节。

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