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在干燥有机溶剂中酶的操作稳定性低:活性部位的变化可能会影响催化作用。

Low operational stability of enzymes in dry organic solvents: changes in the active site might affect catalysis.

机构信息

Department of Chemistry, University of Puerto Rico at Cayey, Cayey, 00736, Puerto Rico.

出版信息

Molecules. 2012 Feb 14;17(2):1870-82. doi: 10.3390/molecules17021870.

Abstract

The potential of enzyme catalysis in organic solvents for synthetic applications has been overshadowed by the fact that their catalytic properties are affected by organic solvents. In addition, it has recently been shown that an enzyme's initial activity diminishes considerably after prolonged exposure to organic media. Studies geared towards understanding this last drawback have yielded unclear results. In the present work we decided to use electron paramagnetic resonance spectroscopy (EPR) to study the motion of an active site spin label (a nitroxide free radical) during 96 h of exposure of the serine protease subtilisin Carlsberg to four different organic solvents. Our EPR data shows a typical two component spectra that was quantified by the ratio of the anisotropic and isotropic signals. The isotropic component, associated with a mobile nitroxide free radical, increases during prolonged exposure to all solvents used in the study. The maximum increase (of 43%) was observed in 1,4-dioxane. Based on these and previous studies we suggest that prolonged exposure of the enzyme to these solvents provokes a cascade of events that could induce substrates to adopt different binding conformations. This is the first EPR study of the motion of an active-site spin label during prolonged exposure of an enzyme to organic solvents ever reported.

摘要

酶在有机溶剂中的催化潜力一直受到其催化性能受有机溶剂影响这一事实的影响。此外,最近已经表明,酶在长时间暴露于有机介质后,其初始活性会大大降低。针对这最后一个缺点的研究得出的结果并不明确。在本工作中,我们决定使用电子顺磁共振波谱(EPR)来研究在四种不同有机溶剂中,96 小时内,丝氨酸蛋白酶卡尔森贝里枯草杆菌蛋白酶的活性部位自旋标记(一个氮氧自由基)的运动。我们的 EPR 数据显示出一种典型的双组分谱,通过各向异性和各向同性信号的比值进行量化。各向同性分量与移动的氮氧自由基有关,在长时间暴露于研究中使用的所有溶剂中都会增加。在 1,4-二氧杂环己烷中观察到最大增加(43%)。基于这些和以前的研究,我们提出酶长时间暴露于这些溶剂会引发一系列事件,可能导致底物采用不同的结合构象。这是首次报道在酶长时间暴露于有机溶剂中,对活性部位自旋标记的运动进行的 EPR 研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1154/6268677/7dcf47b121d5/molecules-17-01870-g001.jpg

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