Han Meng-Nan, Wang Xu-Ming, Pei Chao-Hong, Zhang Chao, Xu Zhidong, Zhang Hong-Lei, Li Wei
College of Chemistry and Environmental Science, Key Laboratory of Chemical Biology of Hebei Province, Laboratory of Medicinal Chemistry and Molecular Diagnosis of the Ministry of Education, Hebei University, 180 Wusi East Road, Baoding, 071002, China.
Shijiazhuang Vince Pharma Tech Co Ltd Fangda Science and Technology Park, 266 Tianshan Street, Shijiazhuang City, China.
Microb Biotechnol. 2021 Mar;14(2):444-452. doi: 10.1111/1751-7915.13602. Epub 2020 May 31.
Chiral aromatic alcohols have received much attention due to their widespread use in pharmaceutical industries. In the asymmetric synthesis processes, the excellent performance of alcohol dehydrogenase makes it a good choice for biocatalysts. In this study, a novel and robust medium-chain alcohol dehydrogenase RhADH from Rhodococcus R6 was discovered and used to catalyse the asymmetric reduction of aromatic ketones to chiral aromatic alcohols. The reduction of 2-hydroxyacetophenone (2-HAP) to (R)-(-)-1-phenyl-1,2-ethanediol ((R)-PED) was chosen as a template to evaluate its catalytic activity. A specific activity of 110 U mg and a 99% purity of e.e. was achieved in the presence of NADH. An efficient bienzyme-coupled catalytic system (RhADH and formate dehydrogenase, CpFDH) was established using a two-phase strategy (dibutyl phthalate and buffer), which highly raised the tolerated substrate concentration (60 g l ). Besides, a broad range of aromatic ketones were enantioselectively reduced to the corresponding chiral alcohols by this enzyme system with highly enantioselectivity. This system is of the potential to be applied at a commercial scale.
手性芳香醇因其在制药行业的广泛应用而备受关注。在不对称合成过程中,醇脱氢酶的优异性能使其成为生物催化剂的良好选择。在本研究中,发现了一种来自红球菌R6的新型且强大的中链醇脱氢酶RhADH,并用于催化芳香酮不对称还原为手性芳香醇。选择将2-羟基苯乙酮(2-HAP)还原为(R)-(-)-1-苯基-1,2-乙二醇((R)-PED)作为模板来评估其催化活性。在存在NADH的情况下,实现了110 U mg的比活性和99%的对映体过量纯度。使用两相策略(邻苯二甲酸二丁酯和缓冲液)建立了一种高效的双酶偶联催化体系(RhADH和甲酸脱氢酶,CpFDH),该体系大大提高了对底物浓度的耐受性(60 g l)。此外,该酶系统能将多种芳香酮对映选择性地还原为相应的手性醇,且对映选择性高。该系统具有商业规模应用的潜力。