A Hammett Study of Clostridium acetobutylicum Alcohol Dehydrogenase (CaADH): An Enzyme with Remarkable Substrate Promiscuity and Utility for Organic Synthesis
作者:Gaurav P. Kudalkar、Virendra K. Tiwari、Joshua D. Lee、David B. Berkowitz
DOI:10.1055/s-0039-1691576
日期:2020.2
free-energy relationship (LFER) study across three distinct classes of carbonyl substrates; namely aryl aldehydes, aryl β-keto esters and aryl trifluoromethyl ketones. Rates are measured by monitoring the decrease in NADPH fluorescence at 460 nm with time across a range of substrate concentrations for each member of each carbonyl compound class. The resulting v 0 versus [S] data are subjected to least-squares
描述了通过 NADPH 依赖性酶丙酮丁醇梭菌醇脱氢酶 (CaADH) 还原三组羰基化合物的物理有机研究。我们小组先前的研究表明,这种酶在还原羰基化合物(包括 α-、β- 和 γ-酮酯(d-立体化学)以及 α,α)方面表现出广泛的底物混杂性和显着的立体化学保真度-二氟化-β-酮膦酸酯(l-立体化学)。为了更好地表征这种有前景的脱氢酶,我们在此报告了对三种不同类型羰基底物进行的哈米特线性自由能关系 (LFER) 研究的结果;即芳基醛、芳基β-酮酯和芳基三氟甲基酮。通过监测每个羰基化合物类别的每个成员的底物浓度范围内 460 nm 处 NADPH 荧光随时间的减少来测量速率。所得的 v 0 与 [S] 数据经过对 Michaelis-Menton 方程的最小二乘双曲线拟合。log(V max) 与 σX 的哈米特图产生以下哈米特参数:(i) 对于 p 取代醛,ρ = 0.99 ± 0.10,ρ =