首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Conformational Heterogeneity in the Michaelis Complex of Lactate Dehydrogenase: An Analysis of Vibrational Spectroscopy Using Markov and Hidden Markov Models
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Conformational Heterogeneity in the Michaelis Complex of Lactate Dehydrogenase: An Analysis of Vibrational Spectroscopy Using Markov and Hidden Markov Models

机译:乳酸脱氢酶Michaelis复合物中的构象异质性:使用马尔可夫和隐马尔可夫模型的振动光谱分析

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摘要

Lactate dehydrogenase (LDH) catalyzes the interconversion of pyruvate and lactate. Recent isotope-edited IR spectroscopy suggests that conformational heterogeneity exists within the Michaelis complex of LDH, and this heterogeneity affects the propensity toward the on-enzyme chemical step for each Michaelis substate. By combining molecular dynamics simulations with Markov and hidden Markov models, we obtained a detailed kinetic network of the substates of the Michaelis complex of LDH. The ensemble-average electric fields exerted onto the vibrational probe were calculated to provide a direct comparison with the vibrational spectroscopy. Structural features of the Michaelis substates were also analyzed on atomistic scales. Our work not only clearly demonstrates the conformational heterogeneity in the Michaelis complex of LDH and its coupling to the reactivities of the substates, but it also suggests a methodology to simultaneously resolve kinetics and structures on atomistic scales, which can be directly compared with the vibrational spectroscopy.
机译:乳酸脱氢酶(LDH)催化丙酮酸和乳酸的相互转化。最近的同位素编辑红外光谱表明,LDH的Michaelis配合物中存在构象异质性,并且这种异质性影响每个Michaelis子态向酶促化学步骤的倾向。通过将分子动力学模拟与马尔可夫模型和隐马尔可夫模型相结合,我们获得了LDH Michaelis配合物亚状态的详细动力学网络。计算施加到振动探针上的集合平均电场,以提供与振动光谱的直接比较。 Michaelis子状态的结构特征也在原子尺度上进行了分析。我们的工作不仅清楚地证明了LDH的Michaelis配合物中的构象异质性及其与亚状态的反应性的耦合,而且还提出了一种在原子尺度上同时解析动力学和结构的方法,可以将其与振动光谱法直接进行比较。 。

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