Kars Vocational School, Kafkas University, Kars, Turkey.
Faculty of Health Sciences, Department of Nutrition and Dietetics, Bayburt University, Bayburt, Turkey.
Chirality. 2021 Sep;33(9):535-542. doi: 10.1002/chir.23337. Epub 2021 Jul 8.
There is a considerable interest in the asymmetric production of chiral allylic alcohols, the main building blocks of many functional molecules. The asymmetric reduction of α,β-unsaturated ketones is difficult with traditional chemical protocols in a regioselective and stereoselective manner. In this study, the reductive capacity of whole cell of Leuconostoc mesenteroides N6, Weissella paramesenteroides N7, Weissella cibaria N9, and Leuconostoc pseudomesenteroides N13 was investigated as whole-cell biocatalysts in the enantioselective reduction of (E)-4-phenylbut-3-en-2-one (1). The biocatalytic reduction of 1 to (S,E)-4-phenylbut-3-en-2-ol ((S,E)-2) using the whole cell of W. cibaria N9 isolated from Turkish sourdough was developed in a regioselective fashion, occurring with excellent conversion and recovering the product in good yield. In biocatalytic reduction reactions, the conversion of the substrate and the enantiomeric excess (ee) of the product are significantly affected by optimization parameters such as temperature, agitation rate, pH, and incubation time. Effects of these parameters on ee and conversion were investigated comprehensively. In addition, to our knowledge, this is the first report on production of (S,E)-2 using whole-cell biocatalyst in excellent yield, conversion with enantiopure form and at gram scale. These findings pave the way for the use of whole cell of W. cibaria N9 for challenging higher substrate concentrations of different α,β-unsaturated ketones for regioselective reduction at industrial scale.
人们对手性烯丙醇的不对称合成很感兴趣,因为它们是许多功能分子的主要构建块。用传统的化学方法以区域和立体选择性的方式还原α,β-不饱和酮是很困难的。在这项研究中,研究了肠膜明串珠菌 N6、魏斯氏菌 N7、粘质魏斯氏菌 N9 和肠膜明串珠菌 N13 的全细胞的还原能力,作为在手性选择性还原(E)-4-苯基丁-3-烯-2-酮(1)中的全细胞生物催化剂。从土耳其酸面团中分离出的粘质魏斯氏菌 N9 的全细胞可将 1 区域选择性地还原为(S,E)-4-苯基丁-3-烯-2-醇((S,E)-2),转化率高,产物收率好。在生物催化还原反应中,底物的转化率和产物的对映体过量(ee)会受到优化参数(如温度、搅拌速度、pH 值和孵育时间)的显著影响。我们全面研究了这些参数对 ee 和转化率的影响。此外,据我们所知,这是首次使用全细胞生物催化剂以优异的产率、转化率和对映纯形式生产(S,E)-2 的报道。这些发现为在工业规模上使用全细胞粘质魏斯氏菌 N9 对不同的α,β-不饱和酮进行具有挑战性的更高底物浓度的区域选择性还原铺平了道路。