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pH-Dependent Uptake of Fumaric Acid in Saccharomyces cerevisiae under Anaerobic Conditions

机译:厌氧条件下酿酒酵母中富马酸的pH依赖性吸收

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Microbial production of C_(4) dicarboxylic acids from renewable resources has gained renewed interest. The yeast Saccharomyces cerevisiae is known as a robust microorganism and is able to grow at low pH, which makes it a suitable candidate for biological production of organic acids. However, a successful metabolic engineering approach for overproduction of organic acids requires an incorporation of a proper exporter to increase the productivity. Moreover, low-pH fermentations, which are desirable for facilitating the downstream processing, may cause back diffusion of the undissociated acid into the cells with simultaneous active export, thereby creating an ATP-dissipating futile cycle. In this work, we have studied the uptake of fumaric acid in S. cerevisiae in carbon-limited chemostat cultures under anaerobic conditions. The effect of the presence of fumaric acid at different pH values (3 to 5) has been investigated in order to obtain more knowledge about possible uptake mechanisms. The experimental results showed that at a cultivation pH of 5.0 and an external fumaric acid concentration of approximately 0.8 mmol · liter~(?1), the fumaric acid uptake rate was unexpectedly high and could not be explained by diffusion of the undissociated form across the plasma membrane alone. This could indicate the presence of protein-mediated import. At decreasing pH levels, the fumaric acid uptake rate was found to increase asymptotically to a maximum level. Although this observation is in accordance with protein-mediated import, the presence of a metabolic bottleneck for fumaric acid conversion under anaerobic conditions could not be excluded.
机译:从可再生资源中微生物生产C_(4)二元羧酸已引起了新的兴趣。酵母酿酒酵母被称为强壮的微生物,能够在低pH下生长,这使其成为生物生产有机酸的合适候选者。但是,成功的代谢工程方法用于过量生产有机酸需要结合适当的出口商以提高生产率。此外,为促进下游加工所需要的低pH发酵可能会导致未解离的酸向细胞的反向扩散,同时具有活性输出,从而形成了耗散ATP的无用循环。在这项工作中,我们研究了厌氧条件下碳限制的恒化器培养物中酿酒酵母对富马酸的吸收。为了获得有关可能的摄取机理的更多知识,已经研究了在不同pH值(3至5)下富马酸的存在的影响。实验结果表明,在培养pH为5.0且外部富马酸浓度约为0.8mmol·L〜(?1)时,富马酸的摄取率出乎意料地高,无法用未离解形式在菌体中的扩散来解释。仅质膜。这可能表明存在蛋白质介导的进口。在降低的pH值下,发现富马酸的吸收率逐渐增加至最大水平。尽管该观察结果与蛋白质介导的输入一致,但不能排除在厌氧条件下富马酸转化的代谢瓶颈的存在。

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