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Site-Specific Measurement of Water Dynamics in the Substrate Pocket of Ketosteroid Isomerase Using Time-Resolved Vibrational Spectroscopy

机译:使用时间分辨振动光谱法测定酮酮异构酶基质异构酶基底袋中水动力学的特异性测量

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摘要

Little is known about the reorganization capacity of water molecules at the active sites of enzymes and how this couples to the catalytic reaction. Here, we study the dynamics of water molecules at the active site of a highly proficient enzyme, Δ5-3-ketosteroid isomerase (KSI), during a light-activated mimic of its catalytic cycle. Photo-excitation of a nitrile containing photo-acid, coumarin183 (C183), mimics the change in charge density that occurs at the active site of KSI during the first step of the catalytic reaction. The nitrile of C183 is exposed to water when bound to the KSI active site, and we used time-resolved vibrational spectroscopy as a site-specific probe to study the solvation dynamics of water molecules in the vicinity of the nitrile. We observed that water molecules at the active site of KSI are highly rigid, during the light-activated catalytic cycle, compared to the solvation dynamics observed in bulk water. Based upon this result we hypothesize that rigid water dipoles at the active site might help in the maintenance of the pre-organized electrostatic environment required for efficient catalysis. The results also demonstrate the utility of nitrile probes in measuring the dynamics of local (H-bonded) water molecules in contrast to the commonly used fluorescence methods which measure the average behavior of primary and subsequent spheres of solvation.
机译:关于酶的活性位点上水分子的重组能力及其与催化反应的耦合知之甚少。在这里,我们研究了高效率酶Δ 5 -3-酮类固醇异构酶(KSI)的光激活模拟过程中水分子的动力学。含有光酸的腈香豆素183(C183)的光激发模拟了催化反应第一步中在KSI活性位点发生的电荷密度变化。当C183的腈与KSI活性位点结合时,腈就暴露在水中,我们使用时间分辨振动光谱作为位点特异性探针来研究腈附近水分子的溶剂化动力学。我们观察到,与在散装水中观察到的溶剂化动力学相比,在光激活的催化循环中,KSI活性位点的水分子具有很高的刚性。基于此结果,我们假设活性位点处的刚性水偶极子可能有助于维持有效催化所需的预先组织好的静电环境。该结果还证明了腈探针在测量局部(氢键)水分子动力学方面的实用性,与通常使用的测量主要和随后溶剂化领域平均行为的荧光方法相反。

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