Şahin Engin
Faculty of Health Sciences, Department of Nutrition and Dietetics, Bayburt University, Bayburt, Turkey.
Chirality. 2022 Aug;34(8):1120-1127. doi: 10.1002/chir.23456. Epub 2022 May 10.
Sulfur-containing chiral heterocyclic secondary alcohols are relevant intermediates in the preparation of enantiomerically pure compounds endowed with biological activity. In this report, we evaluated the reductive potential of different lactic acid bacteria as whole-cell biocatalysts of the enantioselective reduction of 1-(thiophen-2-yl)ethanone (1). Enterococcus faecium BY48, isolated from boza, a cereal-based fermented beverage, was found to be the best biocatalyst in our initial investigations. Using whole-cell preparations of E. faecium BY48, we then systematically analyzed the reaction parameters (pH, incubation period, agitation speed, and temperature) to optimize the yield, the enantiomeric excess (e. e.), and the conversion leading to (S)-1-(thiophen-2-yl)ethanol [(S)-2]. The target derivative, which is a precursor in the synthesis of biologically active chiral compounds, was obtained in enantiomerically pure form, gram-scale amounts, and high yield. This is also the first report that the manufacture of (S)-2 in excellent conversion, yield, enantiopure form, and gram scale used whole-cell biocatalyst. This whole-cell E. faecium BY48 biocatalyzed reaction is a clean, environmentally friendly, and cost-effective process, representing a valuable alternative to chemical catalysis or previously reported biocatalytic procedures in the preparation of (S)-2.
含硫手性杂环仲醇是制备具有生物活性的对映体纯化合物的重要中间体。在本报告中,我们评估了不同乳酸菌作为1-(噻吩-2-基)乙酮(1)对映选择性还原的全细胞生物催化剂的还原潜力。从基于谷物的发酵饮料博扎中分离出的粪肠球菌BY48在我们最初的研究中被发现是最佳生物催化剂。然后,我们使用粪肠球菌BY48的全细胞制剂,系统地分析了反应参数(pH值、孵育时间、搅拌速度和温度),以优化产率、对映体过量(e.e.)以及生成(S)-1-(噻吩-2-基)乙醇[(S)-2]的转化率。目标衍生物是生物活性手性化合物合成中的前体,以对映体纯形式、克级量和高产率获得。这也是第一份关于使用全细胞生物催化剂以优异的转化率、产率、对映体纯形式和克级规模制备(S)-2的报告。这种粪肠球菌BY48全细胞生物催化反应是一个清洁、环保且具有成本效益的过程,在制备(S)-2方面是化学催化或先前报道的生物催化方法的有价值替代方案。