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酿酒酵母中条件特异性启动子活性。

Condition-specific promoter activities in Saccharomyces cerevisiae.

机构信息

School of Life Science and Biotechnology, Dalian University of Technology, Dalian, 116024, China.

State Key Laboratory of Microbial Metabolism (SKLMM), School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Microb Cell Fact. 2018 Apr 10;17(1):58. doi: 10.1186/s12934-018-0899-6.

Abstract

BACKGROUND

Saccharomyces cerevisiae is widely studied for production of biofuels and biochemicals. To improve production efficiency under industrially relevant conditions, coordinated expression of multiple genes by manipulating promoter strengths is an efficient approach. It is known that gene expression is highly dependent on the practically used environmental conditions and is subject to dynamic changes. Therefore, investigating promoter activities of S. cerevisiae under different culture conditions in different time points, especially under stressful conditions is of great importance.

RESULTS

In this study, the activities of various promoters in S. cerevisiae under stressful conditions and in the presence of xylose were characterized using yeast enhanced green fluorescent protein (yEGFP) as a reporter. The stresses include toxic levels of acetic acid and furfural, and high temperature, which are related to fermentation of lignocellulosic hydrolysates. In addition to investigating eight native promoters, the synthetic hybrid promoter P was also evaluated. The results revealed that P and the synthetic promoter P showed the highest strengths under almost all the conditions. Importantly, these two promoters also exhibited high stabilities throughout the cultivation. However, the strengths of P and P , which are generally regarded as 'constitutive' promoters, decreased significantly under certain conditions, suggesting that cautions should be taken to use such constitutive promoters to drive gene expression under stressful conditions. Interestingly, P and P were able to response to both high temperature and acetic acid stress. Moreover, P also led to moderate yEGFP expression when xylose was used as the sole carbon source, indicating that this promoter could be used for inducing proper gene expression for xylose utilization.

CONCLUSION

The results here revealed dynamic changes of promoter activities in S. cerevisiae throughout batch fermentation in the presence of inhibitors as well as using xylose. These results provide insights in selection of promoters to construct S. cerevisiae strains for efficient bioproduction under practical conditions. Our results also encouraged applications of synthetic promoters with high stability for yeast strain development.

摘要

背景

酿酒酵母被广泛研究用于生产生物燃料和生物化学物质。为了在工业相关条件下提高生产效率,通过操纵启动子强度来协调多个基因的表达是一种有效的方法。已知基因表达高度依赖于实际使用的环境条件,并受到动态变化的影响。因此,研究酿酒酵母在不同培养条件下不同时间点的启动子活性,特别是在应激条件下,是非常重要的。

结果

在这项研究中,使用酵母增强型绿色荧光蛋白(yEGFP)作为报告基因,研究了酿酒酵母在应激条件下和木糖存在下各种启动子的活性。这些应激包括与木质纤维素水解物发酵相关的有毒水平的乙酸和糠醛,以及高温。除了研究八个天然启动子外,还评估了合成杂交启动子 P。结果表明,在几乎所有条件下,P 和合成启动子 P 表现出最强的强度。重要的是,这两个启动子在整个培养过程中也表现出较高的稳定性。然而,通常被认为是“组成型”的启动子 P 和 P 的强度在某些条件下显著下降,这表明在应激条件下使用这种组成型启动子驱动基因表达时应谨慎。有趣的是,P 和 P 能够对高温和乙酸应激做出反应。此外,当木糖作为唯一碳源时,P 也导致中度的 yEGFP 表达,表明该启动子可用于诱导木糖利用的适当基因表达。

结论

这些结果揭示了在存在抑制剂和使用木糖的情况下,酿酒酵母在分批发酵过程中启动子活性的动态变化。这些结果为在实际条件下构建高效生物生产的酿酒酵母菌株选择启动子提供了深入了解。我们的结果还鼓励应用具有高稳定性的合成启动子进行酵母菌株开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/721d/5891911/14ab38616766/12934_2018_899_Fig1_HTML.jpg

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