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Conformational sampling and kinetics changes across a non-Arrhenius break point in the enzyme thermolysin

机译:构象抽样和动力学在酶热溶解素中的非阿列希乌乌斯断裂点发生变化

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摘要

Numerous studies have suggested a significant role that protein dynamics play in optimizing enzyme catalysis, and changes in conformational sampling offer a window to explore this role. Thermolysin from Bacillus thermoproteolyticus rokko , which is a heat-stable zinc metalloproteinase, serves here as a model system to study changes of protein function and conformational sampling across a temperature range of 16–36?°C. The temperature dependence of kinetics of thermolysin showed a biphasic transition at 26?°C that points to potential conformational and dynamic differences across this temperature. The non-Arrhenius behavior observed resembled results from previous studies of a thermophilic alcohol dehydrogenase enzyme, which also indicated a biphasic transition at ambient temperatures. To explore the non-Arrhenius behavior of thermolysin, room temperature crystallography was applied to characterize structural changes in a temperature range across the biphasic transition temperature. The alternate conformation of side chain fitting to electron density of a group of residues showed a higher variability in the temperature range from 26 to 29?°C, which indicated a change in conformational sampling that correlated with the non-Arrhenius break point.
机译:许多研究表明,蛋白质动态在优化酶催化方面发挥的重要作用,以及构象采样的变化提供了探索这种作用的窗口。来自芽孢杆菌的热助素rokko,其是热稳定的锌金属蛋白酶,这里作为模型系统,用于研究蛋白质功能的变化,并在16-36Ω℃的温度范围内进行构象采样。散热素动力学的温度依赖性在26Ω℃下表现出两种过渡,这在该温度上指向潜在的构象和动态差异。观察到的非阿列枯士行为类似于先前对嗜热醇脱氢酶酶研究的结果,这也表明了环境温度下的双相转变。为了探讨散热素的非阿列枯士行为,施加室温晶体学施加在双相转变温度下的温度范围内的结构变化。侧链拟合到一组残基的电子密度的替代构象在26至29Ω℃的温度范围内显示出更高的可变性,这表明了与非阿列希乌斯断点相关的构象采样的变化。

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