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Dynamics of Protein ligand binding on multiple time scales:NADH binding to lactate dehydrogenase

机译:蛋白质配体在多个时间尺度上的结合动力学:NADH与乳酸脱氢酶的结合

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Although the importance of atomic motion to how proteins function has been conjectured for several decades, the characterization of protein dynamics on multiple time scales is scant. This is because of severe experimental and theoretical difficulties, particularly characterizing the nanosecond to millisecond time scales. Here, we apply advanced laser-induced temperature-jump relaxation spectroscopic techniques to examine the kinetics of NADH binding to lactate dehydrogenase over this time scale. The bimolecular rate process, at about 290 ~ts, is easily observed as are multiple faster events (with relaxation times of 200 ns, 3.5 ~ts, and 24 [Is), revealing a rich dynamical nature of the binding step. The results show that there are multiple structures of bound enzyme—ligand complexes, some of which are likely to be far from the catalytically productive structure. The results have important implications for interpretations of the binding thermodynamics of ligands to LDH and, by extension, to other proteins. The observed processes likely play a role in the dynamics of the chemistry that is catalyzed by lactate dehydrogenase.
机译:尽管几十年来人们一直认为原子运动对蛋白质如何起作用的重要性,但是在多个时间尺度上对蛋白质动力学的表征却很少。这是由于严重的实验和理论困难,特别是表征纳秒至毫秒的时间刻度。在这里,我们应用先进的激光诱导的温度跳跃弛豫光谱技术来检查在此时间范围内NADH与乳酸脱氢酶结合的动力学。大约290 ts的双分子速率过程以及多个更快的事件(弛豫时间分别为200 ns,3.5 ts和24 [Is])很容易观察到,揭示了结合步骤的丰富动力学性质。结果表明,结合的酶-配体复合物存在多种结构,其中一些可能与催化生产结构相距甚远。这些结果对于解释配体与LDH以及延伸至其他蛋白质的结合热力学具有重要意义。观察到的过程可能在乳酸脱氢酶催化的化学动力学中起作用。

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