Department of Biological Engineering, College of Engineering, Konkuk University, Seoul 05029, Republic of Korea.
Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Republic of Korea.
J Microbiol Biotechnol. 2020 May 28;30(5):785-792. doi: 10.4014/jmb.1910.10044.
L-Theanine, found in green tea leaves has been shown to positively affect immunity and relaxation in humans. There have been many attempts to produce L-theanine through enzymatic synthesis to overcome the limitations of traditional methods. Among the many genes coding for enzymes in the L-theanine biosynthesis, glutamylmethylamide synthetase (GMAS) exhibits the greatest possibility of producing large amounts of production. Thus, GMAS from No. 9 was overexpressed in several strains including vectors with different copy numbers. BW25113(DE3) cells containing the pET24ma:: was selected for strains. The optimal temperature, pH, and metal ion concentration were 50°C, 7, and 5 mM MnCl, respectively. Additionally, ATP was found to be an important factor for producing high concentration of L-theanine so several strains were tested during the reaction for ATP regeneration. Bakers yeast was found to decrease the demand for ATP most effectively. Addition of potassium phosphate source was demonstrated by producing 4-fold higher L-theanine. To enhance the conversion yield, GMAS was additionally overexpressed in the system. A maximum of 198 mM L-theanine was produced with 16.5 mmol/l/h productivity. The whole-cell reaction involving GMAS has greatest potential for scale-up production of L-theanine.
绿茶中的 L-茶氨酸已被证明能积极影响人体的免疫力和放松感。人们曾多次尝试通过酶合成生产 L-茶氨酸,以克服传统方法的局限性。在 L-茶氨酸生物合成的许多编码酶的基因中,谷氨酰甲基酰胺合成酶(GMAS)最有可能大量生产。因此,从 9 号菌中过表达了 GMAS,包括不同拷贝数载体的几种菌株。含有 pET24ma:: 的 BW25113(DE3)细胞被选为菌株。最佳温度、pH 和金属离子浓度分别为 50°C、7 和 5 mM MnCl。此外,发现 ATP 是产生高浓度 L-茶氨酸的重要因素,因此在反应过程中测试了几种菌株的 ATP 再生。发现面包酵母最有效地降低了对 ATP 的需求。通过添加磷酸钾源,L-茶氨酸的产量增加了 4 倍。为了提高转化产率,在该系统中还过表达了 GMAS。最大产量为 198 mM L-茶氨酸,产率为 16.5 mmol/l/h。涉及 GMAS 的全细胞反应最有可能大规模生产 L-茶氨酸。