Kudalkar Gaurav P, Tiwari Virendra K, Lee Joshua D, Berkowitz David B
Department of Chemistry, University of Nebraska, Lincoln, NE.
Synlett. 2020 Feb;31(3):237-247. doi: 10.1055/s-0039-1691576. Epub 2020 Jan 16.
Described is a physical organic study of the reduction of three sets of carbonyl compounds by the NADPH-dependent enzyme Clostridium acetobutylicum alcohol dehydrogenase (CaADH). Previous studies in our group showed this enzyme to display broad substrate promiscuity, yet remarkable stereochemical fidelity, in the reduction of carbonyl compounds, including -, - and -keto esters (D-stereochemistry), as well as ,-difluorinated--keto phosphonate esters (L-stereochemistry). To better mechanistically characterize this promising dehydrogenase enzyme, we report here the results of a Hammett linear free energy relationship (LFER) study across three distinct classes of carbonyl substrates; namely aryl aldehydes, aryl -keto esters and aryl trifluoromethyl ketones. Rates were 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 vs. [S] data were subjected to least squares hyperbolic fitting to the Michaelis-Menton equation. Hammett plots of log(V) vs. then yielded the following Hammett parameters: (i) for p-substituted aldehydes, = 0.99 ± 0.10, = 0.40 ± 0.09 - two domains observed, (ii) for p-substituted -keto esters ρ = 1.02 ± 0.31, and (iii) for p-substituted aryl trifluoromethyl ketones = -0.97 ± 0.12. The positive sign of indicated for the first two compound classes suggests that the hydride transfer from the nicotinamide cofactor is at least partially rate-limiting, whereas the negative sign of for the aryl trifluoromethyl ketone class suggests that dehydration of the ketone hydrate may be rate-limiting for this compound class. Consistent with this notion, examination of the C NMR spectra for the set of p-substituted aryl trifluoromethyl ketones in 2% aqueous DMSO reveals significant formation of the hydrate (gem-diol) for this compound family, with compounds bearing the more electron-withdrawing groups showing greater degrees of hydration. This work also presents the first examples of the CaADH-mediated reduction of aryl trifluoromethyl ketones, and chiral HPLC analysis indicates that the parent compound ,,-trifluoroacetophenone is enzymatically reduced in 99% ee and 95% yield, providing the (S)-stereoisomer, suggesting yet another compound class for which this enzyme displays high enantioselectivity.
本文描述了一项关于丙酮丁醇梭菌醇脱氢酶(CaADH)依赖NADPH还原三组羰基化合物的物理有机研究。我们团队之前的研究表明,该酶在还原羰基化合物时表现出广泛的底物选择性,但具有显著的立体化学保真度,包括α-、β-和γ-酮酯(D-立体化学),以及α,β-二氟-α-酮膦酸酯(L-立体化学)。为了更好地从机理上表征这种有前景的脱氢酶,我们在此报告了一项针对三类不同羰基底物的哈米特线性自由能关系(LFER)研究结果;即芳醛、芳基α-酮酯和芳基三氟甲基酮。通过监测在一系列底物浓度下,随着时间推移,460nm处NADPH荧光的减弱来测量每个羰基化合物类别的每个成员的反应速率。将得到的v对[S]数据进行最小二乘双曲线拟合到米氏方程。log(V)对σ的哈米特图得出了以下哈米特参数:(i)对于对位取代的醛,ρ = 0.99 ± 0.10,δ = 0.40 ± 0.09 - 观察到两个区域,(ii)对于对位取代的α-酮酯,ρ = 1.02 ± 0.31,以及(iii)对于对位取代的芳基三氟甲基酮,ρ = -0.97 ± 0.12。前两类化合物的ρ正值表明,来自烟酰胺辅因子的氢化物转移至少部分是限速步骤,而芳基三氟甲基酮类的ρ负值表明,酮水合物的脱水可能是该化合物类别的限速步骤。与此观点一致,对2% DMSO水溶液中对位取代的芳基三氟甲基酮组的碳-13核磁共振光谱进行检查发现,该化合物家族形成了大量的水合物(偕二醇),带有吸电子能力更强基团的化合物水合程度更高。这项工作还展示了CaADH介导还原芳基三氟甲基酮的首个实例,手性高效液相色谱分析表明,母体化合物α,α,α-三氟苯乙酮经酶催化还原得到(S)-立体异构体,对映体过量率为99%,产率为95%,这表明该酶对另一类化合物也具有高对映选择性。