State Key Laboratory of Food Science and Technology, Jiangnan University, 1800 Lihu Avenue, Wuxi 214122, China.
Key Laboratory of Industrial Biotechnology Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Lihu Avenue, Wuxi 214122, China.
Biomolecules. 2022 Oct 24;12(11):1547. doi: 10.3390/biom12111547.
d-Allulose is the corresponding epimer of d-fructose at the C-3 position, which exhibits a similar taste and sweetness to sucrose. As a low-calorie sweetener, d-allulose has broad application prospects in the fields of medicine, food, and so on. Currently, the production method of d-allulose is mainly the enzymatic conversion of d-fructose by d-allulose 3-epimerase (DAEase). However, the limited specific activity and thermal stability of DAEase restrict its industrial application. Herein, an ultrahigh-throughput screening assay based on the transcription factor PsiR was extensively optimized from the aspects of culture medium components, screening plasmid, and expression host, which enhanced the correction between the fluorescent readout and the enzyme activity. Then, the error-prone PCR (epPCR) library of H10 DAEase (CcDAEase) was screened through the above optimized method, and the variant I228V with improved specific activity and thermal stability was obtained. Moreover, after combining two beneficial substitutions, D281G and C289R, which were previously obtained by this optimized assay, the specific activity of the triple-mutation variant I228V/D281G/C289R reached up to 1.42-fold of the wild type (WT), while its half-life () at 60 °C was prolonged by 62.97-fold. The results confirmed the feasibility of the optimized screening assay as a powerful tool for the directed evolution of DAEase.
阿洛酮糖是 d-果糖在 C-3 位置的对应差向异构体,其味道和甜度与蔗糖相似。作为一种低热量甜味剂,阿洛酮糖在医药、食品等领域具有广阔的应用前景。目前,阿洛酮糖的生产方法主要是通过 d-阿洛酮糖 3-差向异构酶(DAEase)对 d-果糖进行酶转化。然而,DAEase 的有限比活度和热稳定性限制了其工业应用。本文从培养基成分、筛选质粒和表达宿主等方面对基于转录因子 PsiR 的超高通量筛选方法进行了广泛优化,提高了荧光读数与酶活性之间的校正。然后,通过上述优化方法筛选 H10 DAEase(CcDAEase)的易错 PCR(epPCR)文库,获得了比活度和热稳定性提高的突变体 I228V。此外,将之前通过该优化方法获得的两个有利取代 D281G 和 C289R 与突变体 I228V 结合,三重突变体 I228V/D281G/C289R 的比活度达到野生型(WT)的 1.42 倍,而其在 60°C 下的半衰期()延长了 62.97 倍。结果证实了优化筛选方法作为 DAEase 定向进化的有力工具的可行性。