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Enzyme dynamics and activity: time-scale dependence of dynamical transitions in glutamate dehydrogenase solution.

机译:酶动力学和活性:谷氨酸脱氢酶溶液中动态转变的时标依赖性。

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摘要

We have examined the temperature dependence of motions in a cryosolution of the enzyme glutamate dehydrogenase (GDH) and compared these with activity. Dynamic neutron scattering was performed with two instruments of different energy resolution, permitting the separate determination of the average dynamical mean square displacements on the sub-approximately 100 ps and sub-approximately 5 ns time scales. The results demonstrate a marked dependence on the time scale of the temperature profile of the mean square displacement. The lowest temperature at which anharmonic motion is observed is heavily dependent on the time window of the instrument used to observe the dynamics. Several dynamical transitions (inflexions of the mean squared displacement) are observed in the slower dynamics. Comparison with the temperature profile of the activity of the enzyme in the same solvent reveals dynamical transitions that have no effect on GDH function.
机译:我们已经检查了谷氨酸脱氢酶(GDH)冷冻溶液中运动的温度依赖性,并将其与活性进行了比较。用两种具有不同能量分辨率的仪器进行动态中子散射,从而可以分别确定约小于100 ps和约5 ns时间尺度上的平均动态均方位移。结果表明,均方根位移温度曲线的时间刻度显着依赖。观察到非谐运动的最低温度在很大程度上取决于用于观察动力学的仪器的时间窗口。在较慢的动力学中观察到了几个动力学过渡(均方位移的拐点)。与相同溶剂中酶活性的温度曲线比较表明,动态转变对GDH功能没有影响。

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