School of Marine Sciences, Sun Yat-Sen University, Guangzhou, 510275, People's Republic of China.
South China Sea Bio-Resource Exploitation and Utilization Collaborative Innovation Center, Sun Yat-Sen University, Guangzhou, China.
Appl Microbiol Biotechnol. 2018 Feb;102(3):1317-1330. doi: 10.1007/s00253-017-8707-5. Epub 2017 Dec 20.
A highly enantioselective and minimally polluting approach to optically pure chiral alcohols is developed using cheap, readily available and sustainable marine-derived fungi as catalysts. An evaluation of the synthetic potential of 13 Chinese marine fungi was performed to screen for enantioselective reduction of 13 aromatic ketones from different compound classes as substrates. Good yields and excellent enantioselectivities were achieved with this method. In details, first the effects of several crucial variables on the bioreduction of aromatic ketones with whole cells of marine fungi were explored systematically. Next, we obtained insight into the substrate scope of the tested fungi under the optimized conditions, and selected reduction processes were performed at a commercial scale of up to 1000 mL to determine scalability, which led to excellent yields and enantioselectivities. Last, ketone reductases from two prioritized fungi exhibited good recyclability, with those of Rhodotorula mucilageinosa giving a > 95% yield with up to 99% ee during 3 cycles and those of Rhodotorula rubra giving a > 95% yield with up to 99% ee during 9 cycles.
采用廉价、易得且可持续的海洋来源真菌作为催化剂,开发出一种高对映选择性和低污染的方法,用于制备光学纯手性醇。评估了 13 种中国海洋真菌的合成潜力,以筛选作为底物的 13 种不同化合物类别的芳香酮的对映选择性还原。该方法具有良好的收率和优异的对映选择性。具体而言,首先系统地研究了几种关键变量对海洋真菌全细胞还原芳香酮的影响。然后,我们在优化条件下深入了解了测试真菌的底物范围,并在商业规模高达 1000 mL 进行了选择还原过程,以确定可扩展性,这导致了优异的收率和对映选择性。最后,两种优先真菌的酮还原酶表现出良好的可回收性,其中粘红酵母的酮还原酶在 3 个循环中达到了 95%以上的收率和 99%以上的对映选择性,而深红酵母的酮还原酶在 9 个循环中达到了 95%以上的收率和 99%以上的对映选择性。