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Changes in Enzyme Structural Dynamics Studied by Hydrogen Exchange-Mass Spectrometry: Ligand Binding Effects or Catalytically Relevant Motions?

机译:通过氢气交换 - 质谱 - 质谱 - 质谱酶的酶结构动力学的变化:配体结合效应或催化相关的运动?

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It is believed that enzyme catalysis is facilitated by conformational dynamics of the protein scaffold that surrounds the active site, yet the exact nature of catalytically relevant protein motions remains largely unknown. Hydrogen/deuterium exchange (HDX) mass spectrometry (MS) reports on backbone H-bond fluctuations. HDX/MS thus represents a promising avenue for probing the relationship between enzyme dynamics and catalysis. A seemingly straightforward strategy for such studies involves comparative measurements during substrate turnover and in the resting state. We examined the feasibility of this approach using rabbit muscle pyruvate kinase (rM1-PK) which catalyzes the conversion of phosphoenolpyruvate and Mg-ADP to pyruvate and Mg-ATP. HDX/MS revealed that catalytically active rM1-PK undergoes significant rigidification in the active site. This finding is counterintuitive, considering the purported correlation between dynamics and catalysis. Interestingly, virtually the same rigidification was seen upon exposing rMl-PK to substrates or products in the absence of turnover. These data imply that the active site dynamics during turnover are dominated by protein-ligand binding interactions. These interactions stabilize H-bonds in the vicinity of the active site, thereby masking subtle dynamic features that might be uniquely associated with catalysis. Our data uncover an inherent problem with side-by-side turnover/resting state measurements, i.e., the difficulty to design a suitable reference state against which the working enzyme can be compared. Comparative HDX/MS experiments on enzyme dynamics should therefore be interpreted with caution.
机译:据信,通过围绕活性位点的蛋白质支架的构象动态促进酶催化,但催化相关蛋白质运动的确切性质仍然很大程度上。氢/氘交换(HDX)质谱(MS)关于骨干H键波动的报告。因此,HDX / MS代表了探讨酶动态和催化之间关系的承诺途径。这种研究的看似简单的策略涉及基板周转期间和静止状态的比较测量。我们使用兔肌肉丙酮酸激酶(RM1-PK)检查了这种方法的可行性,该激酶催化磷酸丙酮和Mg-Adp转化为丙酮酸和Mg-ATP。 HDX / MS显示,催化活性RM1-PK在活性位点进行显着致力。考虑到动力学与催化之间的相关性,这一发现是违反直觉的。有趣的是,在没有营业额的情况下将RML-PK暴露于底物或产品时,几乎看得几乎相同的致力化。这些数据意味着营业额期间的活性位点动态由蛋白质 - 配体结合相互作用主导。这些相互作用稳定活性位点附近的H键,从而掩盖可能与催化唯一相关的细微动态特征。我们的数据揭示了并排转换/静态状态测量的固有问题,即设计难以进行比较工作酶的合适参考状态。因此,对比较HDX / MS实验应谨慎地解释酶动态。

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