Li Jian-Xiu, Huang Yan-Yan, Chen Xian-Rui, Du Qi-Shi, Meng Jian-Zong, Xie Neng-Zhong, Huang Ri-Bo
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Life Science and Biotechnology College, Guangxi University 100 Daxue Road Nanning 530004 China
State Key Laboratory of No-Food Biomass and Enzyme Technology, National Engineering Research Center for No-Food Biorefinery, Guangxi Key Laboratory of Biorefinery, Guangxi Academy of Sciences 98 Daling Road Nanning 530007 China.
RSC Adv. 2018 Aug 29;8(53):30512-30519. doi: 10.1039/c8ra06260a. eCollection 2018 Aug 24.
Acetoin is an important platform chemical with a variety of applications in foods, cosmetics, chemical synthesis, and especially in the asymmetric synthesis of optically active pharmaceuticals. It is also a useful breath biomarker for early lung cancer diagnosis. In order to enhance production of optical ()-acetoin and facilitate this building block for a series of chiral pharmaceuticals derivatives, we have developed a systematic approach using -NADH regeneration systems and promising diacetyl reductase. Under optimal conditions, we have obtained 52.9 g L of ()-acetoin with an enantiomeric purity of 99.5% and a productivity of 6.2 g (L h). The results reported in this study demonstrated that the production of ()-acetoin could be effectively improved through the engineering of cofactor regeneration with promising diacetyl reductase. The systematic approach developed in this study could also be applied to synthesize other optically active α-hydroxy ketones, which may provide valuable benefits for the study of drug development.
乙偶姻是一种重要的平台化合物,在食品、化妆品、化学合成领域有多种应用,尤其在光学活性药物的不对称合成中。它也是早期肺癌诊断的一种有用的呼吸生物标志物。为了提高光学()-乙偶姻的产量,并为一系列手性药物衍生物提供这种构建模块,我们开发了一种使用-NADH再生系统和有前景的双乙酰还原酶的系统方法。在最佳条件下,我们获得了52.9 g/L的()-乙偶姻,对映体纯度为99.5%,生产率为6.2 g/(L·h)。本研究报告的结果表明,通过有前景的双乙酰还原酶进行辅因子再生工程,可以有效提高()-乙偶姻的产量。本研究开发的系统方法也可应用于合成其他光学活性α-羟基酮,这可能为药物开发研究提供有价值的益处。