Chen Ming, Li Dai, Gao Ziqing, Zhang Chunzhi
College of Bioengineering, Dalian Polytechnic University, Dalian, 116034, People's Republic of China.
Bioprocess Biosyst Eng. 2014 Jul;37(7):1411-6. doi: 10.1007/s00449-013-1113-1. Epub 2013 Dec 22.
Resveratrol is now gaining much attention because of its pharmacological properties. Polygonum cuspidatum has the highest content of resveratrol in plants and is the best material offering resveratrol. However, the content of resveratrol in P. cuspidatum is much lower compared with its glycoside polydatin. In this study, enzymatic transformation of polydatin to resveratrol by piceid-β-D-glucosidase from Aspergillus oryzae sp. 100 was investigated. The biotransformation conditions were optimized. Under the optimized conditions of 60 °C, pH 5.0, substrate concentration of 40 g/L and piceid-β-D-glucosidase activity of 5 U/mL, enzymatic transformation of polydatin from P. cuspidatum was successfully performed, during which 22.5 g/L of resveratrol was produced after reacting for 4 h, with the substrate conversion rate of 2 g/h/U of piceid-β-D-glucosidase. A feasible and environment friendly process of enzymatic transformation of polydatin to resveratrol was developed, which provides a promising and competitive alternative for the production of resveratrol.
白藜芦醇因其药理特性而备受关注。虎杖是植物中白藜芦醇含量最高的,也是提供白藜芦醇的最佳原料。然而,虎杖中白藜芦醇的含量与其糖苷白藜芦醇苷相比要低得多。在本研究中,对米曲霉sp. 100来源的白藜芦醇苷-β-D-葡萄糖苷酶将白藜芦醇苷转化为白藜芦醇的酶促反应进行了研究。对生物转化条件进行了优化。在60℃、pH 5.0、底物浓度40 g/L和白藜芦醇苷-β-D-葡萄糖苷酶活性5 U/mL的优化条件下,成功实现了虎杖中白藜芦醇苷的酶促转化,反应4 h后产生了22.5 g/L的白藜芦醇,白藜芦醇苷-β-D-葡萄糖苷酶的底物转化率为2 g/h/U。开发了一种可行且环境友好的将白藜芦醇苷酶促转化为白藜芦醇的工艺,为白藜芦醇的生产提供了一种有前景且具竞争力的替代方法。