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首页> 外文期刊>Angewandte Chemie >Hydrostatic Pressure Studies Distinguish Global from Local Protein Motions in C-H Activation by Soybean Lipoxygenase-1
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Hydrostatic Pressure Studies Distinguish Global from Local Protein Motions in C-H Activation by Soybean Lipoxygenase-1

机译:静水压研究从大豆脂氧合酶-1的C-H激活中区分全局与局部蛋白运动。

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摘要

The proposed contributions of distinct classes of local versus global protein motions during enzymatic bond making/breaking processes has been difficult to verify. We employed soybean lipoxygenase-1 as a model system to investigate the impact of high pressure at variable temperatures on the hydrogen-tunneling properties of the wild-type protein and three single-site mutants. For all variants, pressure dramatically elevates the enthalpies of activation for the C-H activation. In contrast, the primary kinetic isotope effects (KIEs) for C-H activation and their corresponding temperature dependencies remain unchanged up to ca. 700 bar. The differential impact of elevated hydrostatic pressure on the temperature dependencies of rate constants versus substrate KIEs provides direct evidence for two distinct classes of protein motions: local, isotope-dependent donor-acceptor distance-sampling modes, and a more global, isotope-independent search for productive protein conformational sub-states.
机译:在酶键形成/断裂过程中,不同类别的局部蛋白运动与全局蛋白运动的拟议贡献很难验证。我们采用大豆脂氧合酶-1作为模型系统,研究了可变温度下高压对野生型蛋白和三个单点突变体的氢隧穿特性的影响。对于所有变体,压力显着提高了C-H活化的活化焓。相比之下,C-H活化的主要动力学同位素效应(KIE)及其相应的温度依存性一直保持不变。 700巴。静水压力升高对速率常数与底物KIE的温度依赖性的不同影响为两种不同的蛋白质运动提供了直接的证据:局部的,同位素依赖性的供体-受体距离采样模式以及更全局的,同位素无关的搜索用于生产性蛋白质构象亚状态。

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