Ito Yoichiro, Yamanishi Mamoru, Ikeuchi Akinori, Matsuyama Takashi
Matsuyama Research Group and ‡Biotechnology Laboratory, Toyota Central Research and Development Laboratories, Inc. , 41-1 Yokomichi, Nagakute, Aichi 480-1192, Japan.
ACS Synth Biol. 2015 Jan 16;4(1):12-6. doi: 10.1021/sb500096y. Epub 2014 May 7.
Control of the expression levels of multiple enzymes in transgenic yeasts is essential for the effective production of complex molecules through fermentation. Here, we propose a tunable strategy for the control of expression levels based on the design of terminator regions and other gene-expression control elements in Saccharomyces cerevisiae. Our genome-integrated system, which is capable of producing high expression levels over a wide dynamic range, will broadly enable metabolic engineering and synthetic biology. We demonstrated that the activities of multiple cellulases and the production of ethanol were doubled in a transgenic yeast constructed with our system compared with those achieved with a standard expression system.
通过发酵有效生产复杂分子时,控制转基因酵母中多种酶的表达水平至关重要。在此,我们基于酿酒酵母终止子区域和其他基因表达控制元件的设计,提出了一种用于控制表达水平的可调策略。我们的基因组整合系统能够在很宽的动态范围内产生高表达水平,将广泛推动代谢工程和合成生物学的发展。我们证明,与使用标准表达系统构建的转基因酵母相比,使用我们的系统构建的转基因酵母中多种纤维素酶的活性和乙醇产量提高了一倍。