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酿酒酵母甘油同化菌株中的碳代谢通量分析。

C-metabolic flux analysis in glycerol-assimilating strains of Saccharomyces cerevisiae.

作者信息

Yuzawa Taiji, Shirai Tomokazu, Orishimo Ryoko, Kawai Kazuki, Kondo Akihiko, Hirasawa Takashi

机构信息

School of Life Science and Technology, Tokyo Institute of Technology.

Center for Sustainable Resource Science, RIKEN.

出版信息

J Gen Appl Microbiol. 2021 Oct 22;67(4):142-149. doi: 10.2323/jgam.2020.10.001. Epub 2021 May 8.

Abstract

Glycerol is an attractive raw material for the production of useful chemicals using microbial cells. We previously identified metabolic engineering targets for the improvement of glycerol assimilation ability in Saccharomyces cerevisiae based on adaptive laboratory evolution (ALE) and transcriptome analysis of the evolved cells. We also successfully improved glycerol assimilation ability by the disruption of the RIM15 gene encoding a Greatwall protein kinase together with overexpression of the STL1 gene encoding the glycerol/H symporter. To understand glycerol assimilation metabolism in the evolved glycerol-assimilating strains and STL1-overexpressing RIM15 disruptant, we performed metabolic flux analysis using C-labeled glycerol. Significant differences in metabolic flux distributions between the strains obtained from the culture after 35 and 85 generations in ALE were not found, indicating that metabolic flux changes might occur in the early phase of ALE (i.e., before 35 generations at least). Similarly, metabolic flux distribution was not significantly changed by RIM15 gene disruption. However, fluxes for the lower part of glycolysis and the TCA cycle were larger and, as a result, flux for the pentose phosphate pathway was smaller in the STL1-overexpressing RIM15 disruptant than in the strain obtained from the culture after 85 generations in ALE. It could be effective to increase flux for the pentose phosphate pathway to improve the glycerol assimilation ability in S. cerevisiae.

摘要

甘油是利用微生物细胞生产有用化学品的一种有吸引力的原料。我们之前基于适应性实验室进化(ALE)和进化细胞的转录组分析,确定了酿酒酵母中用于提高甘油同化能力的代谢工程靶点。我们还通过破坏编码长城蛋白激酶的RIM15基因以及过表达编码甘油/H同向转运体的STL1基因,成功提高了甘油同化能力。为了解进化后的甘油同化菌株和过表达STL1的RIM15缺失突变体中的甘油同化代谢,我们使用C标记的甘油进行了代谢通量分析。未发现ALE中培养35代和85代后获得的菌株之间代谢通量分布有显著差异,这表明代谢通量变化可能发生在ALE的早期阶段(即至少在35代之前)。同样,RIM15基因破坏并未显著改变代谢通量分布。然而,与ALE中培养85代后获得的菌株相比,过表达STL1的RIM15缺失突变体中糖酵解下游和三羧酸循环的通量更大,结果戊糖磷酸途径的通量更小。增加戊糖磷酸途径的通量可能对提高酿酒酵母的甘油同化能力有效。

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