Department of Systems Biology, Center for Microbial Biotechnology, Building 223, Technical University of Denmark (DTU), DK-2800 Kgs. Lyngby, Denmark.
Biotechnol Bioeng. 2010 May 1;106(1):86-96. doi: 10.1002/bit.22668.
The mevalonate pathway in the yeast Saccharomyces cerevisiae was deregulated in order to enhance the intracellular pool of farnesyl diphosphate (FPP), the direct precursor for the biosynthesis of sesquiterpenes. Over-expression of the catalytic domain of HMG1, both from the genome and plasmid, resulted in higher production of cubebol, a plant originating sesquiterpene, and increased squalene accumulation. Down-regulation of ERG9 by replacing its native promoter with the regulatable MET3 promoter, enhanced cubebol titers but simultaneous over-expression of tHMG1 and repression of ERG9 did not further improve cubebol production. Furtheremore, the concentrations of squalene and ergosterol were measured in the engineered strains. Unexpectedly, significant accumulation of squalene and restoring the ergosterol biosynthesis were observed in the ERG9 repressed strains transformed with the plasmids harboring cubebol synthase gene. This could be explained by a toxicity effect of cubebol, possibly resulting in higher transcription levels for the genes under control of MET3 promoter, which could lead to accumulation of squalene and ergosterol.
为了增加法呢基二磷酸(FPP)的细胞内浓度,FPP 是倍半萜生物合成的直接前体,我们对酿酒酵母中的甲羟戊酸途径进行了调控。从基因组和质粒中外源过表达 HMG1 的催化结构域,导致植物来源的倍半萜古巴醇产量增加,角鲨烯积累增加。用可调控的 MET3 启动子替代 ERG9 的天然启动子,下调 ERG9 的表达,可提高古巴醇的产量,但同时过表达 tHMG1 和抑制 ERG9 并不能进一步提高古巴醇的产量。此外,我们还测量了工程菌株中角鲨烯和麦角固醇的浓度。出乎意料的是,在转化含有古巴醇合酶基因的质粒的 ERG9 被抑制的菌株中,角鲨烯和麦角固醇的生物合成显著积累。这可以用古巴醇的毒性作用来解释,可能导致 MET3 启动子控制的基因转录水平升高,从而导致角鲨烯和麦角固醇的积累。