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首页> 外文期刊>Biophysical Journal >A link between hinge-bending domain motions and the temperature dependence of catalysis in 3-isopropylmalate dehydrogenase.
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A link between hinge-bending domain motions and the temperature dependence of catalysis in 3-isopropylmalate dehydrogenase.

机译:铰链弯曲域运动与3-异丙基苹果酸脱氢酶催化的温度依赖性之间的联系。

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摘要

Enzyme function depends on specific conformational motions. We show that the temperature dependence of enzyme kinetic parameters can provide insight into these functionally relevant motions. While investigating the catalytic properties of IPMDH from Escherichia coli, we found that its catalytic efficiency (k(cat)/K(M,IPM)) for the substrate IPM has an unusual temperature dependence, showing a local minimum at approximately 35 degrees C. In search of an explanation, we measured the individual constants k(cat) and K(M,IPM) as a function of temperature, and found that the van 't Hoff plot of K(M,IPM) shows sigmoid-like transition in the 20-40 degrees C temperature range. By means of various measurements including hydrogen-deuterium exchange and fluorescence resonance energy transfer, we showed that the conformational fluctuations, including hinge-bending domain motions increase more steeply with temperatures >30 degrees C. The thermodynamic parameters of ligand binding determined by isothermal titration calorimetry as a function of temperature were found to be strongly correlated to the conformational fluctuations of the enzyme. Because the binding of IPM is associated with a hinge-bending domain closure, the more intense hinge-bending fluctuations at higher temperatures increasingly interfere with IPM binding, thereby abruptly increasing its dissociation constant and leading to the observed unusual temperature dependence of the catalytic efficiency.
机译:酶功能取决于特定的构象运动。我们表明酶动力学参数的温度依赖性可以提供这些功能相关的运动的见解。在调查大肠杆菌中IPMDH的催化性能时,我们发现其对底物IPM的催化效率(k(cat)/ K(M,IPM))具有不同寻常的温度依赖性,在约35摄氏度时显示出局部最小值。为了寻求解释,我们测量了各个常数k(cat)和K(M,IPM)作为温度的函数,发现K(M,IPM)的van't Hoff图显示了S型类似跃迁。 20-40摄氏度的温度范围。通过包括氢-氘交换和荧光共振能量转移在内的各种测量,我们表明构象波动(包括铰链弯曲域的运动)随着温度> 30摄氏度的增加而更加陡峭。通过等温滴定量热法测定的配体结合的热力学参数发现温度的函数与酶的构象波动密切相关。由于IPM的结合与铰链弯曲结构域的闭合有关,因此在较高温度下更强烈的铰链弯曲波动会越来越多地干扰IP​​M结合,从而突然增加其解离常数,并导致观察到的催化效率异常的温度依赖性。

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