Minami Hiromichi, Kim Ju-Sung, Ikezawa Nobuhiro, Takemura Tomoya, Katayama Takane, Kumagai Hidehiko, Sato Fumihiko
Research Institute for Bioresources and Biotechnology, Ishikawa Prefectural University, Nonoichi-machi, Ishikawa 921-8836, Japan.
Proc Natl Acad Sci U S A. 2008 May 27;105(21):7393-8. doi: 10.1073/pnas.0802981105. Epub 2008 May 20.
Benzylisoquinoline alkaloids, such as the analgesic compounds morphine and codeine, and the antibacterial agents berberine, palmatine, and magnoflorine, are synthesized from tyrosine in the Papaveraceae, Berberidaceae, Ranunculaceae, Magnoliaceae, and many other plant families. It is difficult to produce alkaloids on a large scale under the strict control of secondary metabolism in plants, and they are too complex for cost-effective chemical synthesis. By using a system that combines microbial and plant enzymes to produce desired benzylisoquinoline alkaloids, we synthesized (S)-reticuline, the key intermediate in benzylisoquinoline alkaloid biosynthesis, from dopamine by crude enzymes from transgenic Escherichia coli. The final yield of (S)-reticuline was 55 mg/liter within 1 h. Furthermore, we synthesized an aporphine alkaloid, magnoflorine, or a protoberberine alkaloid, scoulerine, from dopamine via reticuline by using different combination cultures of transgenic E. coli and Saccharomyces cerevisiae cells. The final yields of magnoflorine and scoulerine were 7.2 and 8.3 mg/liter culture medium. These results indicate that microbial systems that incorporate plant genes cannot only enable the mass production of scarce benzylisoquinoline alkaloids but may also open up pathways for the production of novel benzylisoquinoline alkaloids.
苄基异喹啉生物碱,如镇痛化合物吗啡和可待因,以及抗菌剂小檗碱、巴马汀和木兰碱,是在罂粟科、小檗科、毛茛科、木兰科和许多其他植物科中由酪氨酸合成的。在植物次生代谢的严格控制下,大规模生产生物碱很困难,而且它们对于经济高效的化学合成来说过于复杂。通过使用一种结合微生物和植物酶来生产所需苄基异喹啉生物碱的系统,我们利用转基因大肠杆菌的粗酶从多巴胺合成了(S)-网状番荔枝碱,这是苄基异喹啉生物碱生物合成中的关键中间体。(S)-网状番荔枝碱的最终产量在1小时内达到55毫克/升。此外,我们通过使用转基因大肠杆菌和酿酒酵母细胞的不同组合培养,从多巴胺经网状番荔枝碱合成了一种阿朴啡生物碱木兰碱或一种原小檗碱生物碱紫堇灵。木兰碱和紫堇灵的最终产量分别为7.2和8.3毫克/升培养基。这些结果表明,整合植物基因的微生物系统不仅能够大规模生产稀有的苄基异喹啉生物碱,还可能为新型苄基异喹啉生物碱的生产开辟途径。