首页> 外文期刊>Journal of the American Chemical Society >THE MECHANISTIC DISSECTION OF THE PLUNGE IN ENZYMATIC ACTIVITY UPON TRANSITION FROM WATER TO ANHYDROUS SOLVENTS
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THE MECHANISTIC DISSECTION OF THE PLUNGE IN ENZYMATIC ACTIVITY UPON TRANSITION FROM WATER TO ANHYDROUS SOLVENTS

机译:从水到无水溶剂转变过程中酶活性的主要作用机理

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Subtilisin Carlsberg dissolved in aqueous solution is several orders of magnitude more active than the enzyme suspended in anhydrous acetonitrile. In order to ascertain why, we employed crystalline subtilisin lightly cross-linked with glutaraldehyde as a catalyst in both aqueous and organic media. The structure of this crystalline enzyme in acetonitrile had been previously found to be virtually identical to that in water, thus ruling out solvent-induced conformational changes as the cause of the enzymatic activity drop. Titration of the competent active centers of subtilisin revealed that k(cat)/K-M is solely responsible for this activity plunge. Quantitative mechanistic analysis of the 7-order-of-magnitude difference in k(cat)/K-M values between subtilisin dissolved in water and cross-linked subtilisin crystals suspended in anhydrous acetonitrile allowed accounting for at least 5.6 orders of magnitude. This drastic decline is due to (i) a marked shift in the activity vs pH profile of the cross-linked crystalline enzyme compared to its soluble counterpart; (ii) different (far less favorable in acetonitrile than in water) energetics of substrate desolvation; and (iii) very low thermodynamic activity of water in anhydrous acetonitrile resulting in a much more rigid and thus less active enzyme.
机译:溶于水溶液的枯草杆菌蛋白酶嘉士伯活性比悬浮在无水乙腈中的酶高几个数量级。为了确定原因,我们在水性和有机介质中均采用了与戊二醛轻度交联的结晶枯草杆菌蛋白酶作为催化剂。先前已经发现该结晶酶在乙腈中的结构实际上与水中的结构相同,因此排除了溶剂引起的构象变化是造成酶活性下降的原因。枯草杆菌蛋白酶有效活性中心的滴定表明,k(cat)/ K-M完全负责该活性的下降。溶解在水中的枯草杆菌蛋白酶与悬浮在无水乙腈中的交联枯草杆菌蛋白酶晶体之间k(cat)/ K-M值的7个数量级差异的定量机理分析,至少可以解释5.6个数量级。这种急剧下降的原因是:(i)交联的结晶酶与其可溶的对应物相比,其活性相对于pH曲线的变化明显; (ii)底物去溶剂化的能量不同(乙腈比水更不利); (iii)水在无水乙腈中的热力学活性非常低,导致酶的刚性更高,因此活性更低。

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