Inui Takayuki, Tamura Ken-Ichi, Fujii Nanae, Morishige Takashi, Sato Fumihiko
Laboratory of Molecular and Cellular Biology of Totipotency, Division of Integrated Life Science, Graduate School of Biostudies, Kyoto University, Kyoto, Japan.
Plant Cell Physiol. 2007 Feb;48(2):252-62. doi: 10.1093/pcp/pcl062. Epub 2006 Dec 22.
Benzylisoquinoline alkaloids are one of the most important secondary metabolite groups, and include the economically important analgesic morphine and the antimicrobial agent berberine. To improve the production of these alkaloids, we investigated the effect of the overexpression of putative rate-limiting step enzymes in benzylisoquinoline alkaloid biosynthesis. We introduced two O-methyltransferase [Coptis japonica norcoclaurine 6-O-methyltransferase (6OMT) and 3'-hydroxy-N-methylcoclaurine 4'-O-methyltransferase (4'OMT)] expression vectors into cultured California poppy cells to avoid the gene silencing effect of endogenous genes. We established 20 independent lines for 6OMT transformants and 15 independent lines for 4'OMT transformants. HPLC/liquid chromatography-mass spectrometry (LC-MS) analysis revealed that the overexpression of C. japonica 6OMT was associated with an average alkaloid content 7.5 times greater than that in the wild type, whereas the overexpression of C. japonica 4'OMT had only a marginal effect. Further characterization of 6OMT in California poppy cells indicated that a 6OMT-specific gene is missing and 4OMT catalyzes the 6OMT reaction with low activity in California poppy, which supports the notion that the 6OMT reaction is important for alkaloid biosynthesis in this plant species. We discuss the importance of 6OMT in benzylisoquinoline alkaloid biosynthesis and the potential for using a rate-limiting step gene to improve alkaloid production.
苄基异喹啉生物碱是最重要的次生代谢物基团之一,包括具有重要经济价值的镇痛剂吗啡和抗菌剂小檗碱。为了提高这些生物碱的产量,我们研究了苄基异喹啉生物碱生物合成中假定的限速步骤酶过表达的影响。我们将两个O-甲基转移酶[黄连诺可替宁6-O-甲基转移酶(6OMT)和3'-羟基-N-甲基黄连碱4'-O-甲基转移酶(4'OMT)]表达载体导入培养的加利福尼亚罂粟细胞中,以避免内源基因的基因沉默效应。我们为6OMT转化体建立了20个独立株系,为4'OMT转化体建立了15个独立株系。高效液相色谱/液相色谱-质谱联用(HPLC/LC-MS)分析表明,黄连6OMT的过表达与生物碱平均含量比野生型高7.5倍有关,而黄连4'OMT的过表达只有轻微影响。对加利福尼亚罂粟细胞中6OMT的进一步表征表明,该细胞中缺少6OMT特异性基因,4OMT在加利福尼亚罂粟中以低活性催化6OMT反应,这支持了6OMT反应对该植物物种生物碱生物合成很重要的观点。我们讨论了6OMT在苄基异喹啉生物碱生物合成中的重要性以及利用限速步骤基因提高生物碱产量的潜力。