Department of Chemistry, Whitman College, 345 Boyer Avenue, Walla Walla, WA 99362, USA.
J Ind Microbiol Biotechnol. 2022 May 25;49(3). doi: 10.1093/jimb/kuac006.
The cis-dihydroxylation of arenes by Rieske dearomatizing dioxygenases (RDDs) represents a powerful tool for the production of chiral precursors in organic synthesis. Here, the substrate specificity of the RDD benzoate dioxygenase (BZDO) in Ralstonia eutropha B9 whole cells was explored using quantitative 1H nuclear magnetic resonance spectroscopy (q1H-NMR). The specific activity, specific carbon uptake, and regioselectivity of the dihydroxylation reaction were evaluated in resting cell cultures for a panel of 17 monosubstituted benzoates. Two new substrates of this dioxygenase system were identified (2-methyl- and 3-methoxybenzoic acid) and the corresponding cis-diol metabolites were characterized. Higher activities were observed for benzoates with smaller substituents, predominantly at the 3-position. Elevated activities were also observed in substrates bearing greater partial charge at the C-2 position of the benzoate ring. The regioselectivity of the reaction was directly measured using q1H-NMR and found to have positive correlation with increasing substituent size. These results widen the pool of cis-diol metabolites available for synthetic applications and offer a window into the substrate traits that govern specificity for BZDO.
芳基的顺式二羟基化反应由 Rieske 去芳构化双加氧酶(RDDs)催化,这是有机合成中生产手性前体的有力工具。在这里,使用定量 1H 核磁共振波谱(q1H-NMR)探索了 Ralstonia eutropha B9 全细胞中苯甲酸盐双加氧酶(BZDO)的底物特异性。在静止细胞培养物中,针对 17 种单取代苯甲酸,评估了该加氧酶系统的比活性、比碳吸收和二羟基化反应的区域选择性。鉴定出两种新的该加氧酶系统的底物(2-甲基-和 3-甲氧基苯甲酸),并对相应的顺二醇代谢物进行了表征。具有较小取代基的苯甲酸的活性更高,主要在 3-位。在苯甲酸盐环的 C-2 位带有更大部分电荷的底物也表现出较高的活性。使用 q1H-NMR 直接测量反应的区域选择性,发现与取代基大小的增加呈正相关。这些结果拓宽了可用于合成应用的顺二醇代谢物的范围,并为控制 BZDO 特异性的底物特征提供了一个窗口。