基于β受体阻滞剂心得安的纤维生物水解酶Cel7A对配体的手性识别机制:外显水分子对结合和选择性的影响

IF 2.6 Q2 MULTIDISCIPLINARY SCIENCES
A. Fagerström, T. Liljefors, M. Sandgren, R. Isaksson, J. Ståhlberg, U. Berg
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引用次数: 0

摘要

蛋白质是有用的手性选择器。为了了解其识别机制和手性区分,我们更深入地研究了基于心得安的一系列氨基醇抑制剂(R)-和(S)-对映体与纤维生物水解酶Cel7A(里氏木霉)的结合。用x射线测定了结合最强普萘洛尔类似物的(R)-和(S)-对映体的蛋白质复合物的晶体结构。结合结构数据、毛细管电泳和微热实验的热力学数据以及计算模型,可以更清楚地了解对映体选择性的起源及其相反的热力学特征。利用Glide程序将这些新的晶体结构用于计算普萘洛尔类似物的分子柔性对接。结果表明,活性位点上的一些水分子对(R)-对映体的对接是必需的,而对(S)-对映体则不是必需的。结果与酶的对映体辨别有关。包括解离常数(kd值)和热力学数据,以显示配体结构修饰对与对映体选择性有关的焓和熵的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chiral recognition mechanism of cellobiohydrolase Cel7A for ligands based on the β‐blocker propranolol: The effect of explicit water molecules on binding and selectivities

Chiral recognition mechanism of cellobiohydrolase Cel7A for ligands based on the β‐blocker propranolol: The effect of explicit water molecules on binding and selectivities
: Proteins are useful chiral selectors. In order to understand the recognition mechanism and the chiral discrimination, binding of the (R)- and (S)-enantiomers of a series of designed amino alcohol inhibitors based on propranolol to cellobiohydrolase Cel7A (Trichoderma reesei) has been studied more closely. X-ray crystal structures were determined of the protein complex with the (R)- and (S)-enantiomers of the strongest binding propranolol analog. The combination of the structural data, thermodynamic data from capillary electrophoresis and microcalorimetry experiments and computational modeling give a clearer insight into the origin of the enantioselectivity and its opposite thermodynamic signature. The new crystal structures were used in computational molecular flexible dockings of the propranolol analogues using the program Glide. The results indicated that several water molecules in the active site were essential for the docking of the (R)-enantiomers, but not for the (S)-enantiomers. The results are discussed in relation to the enantiomeric discrimination of the enzyme. Both dissociation constants (Kd-values) and thermodynamical data are included to show the effects of the structural modifications in the ligand on enthalpy and entropy in relation to the enantioselectivity.
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