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Metabolic regulatory mechanisms and physiological roles of functional amino acids and their applications in yeast

机译:官能氨基酸的代谢调节机制及其生理作用及其在酵母中的应用

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摘要

In yeast, amino acid metabolism and its regulatory mechanisms vary under different growth environments by regulating anabolic and catabolic processes, including uptake and export, and the metabolic styles form a complicated but robust network. There is also crosstalk with various metabolic pathways, products and signal molecules. The elucidation of metabolic regulatory mechanisms and physiological roles is important fundamental research for understanding life phenomenon. In terms of industrial application, the control of amino acid composition and content is expected to contribute to an improvement in productivity, and to add to the value of fermented foods, alcoholic beverages, bioethanol, and other valuable compounds (proteins and amino acids, etc.). This review article mainly describes our research in constructing yeast strains with high functionality, focused on the metabolic regulatory mechanisms and physiological roles of “functional amino acids”, such as l-proline, l-arginine, l-leucine, l-valine, l-cysteine, and l-methionine, found in yeast.
机译:在酵母,氨基酸代谢及其调节机制通过调节合成代谢和分解代谢过程,包括摄取和出口,以及代谢样式形成复杂但坚固的网络。还有各种代谢途径,产品和信号分子的串扰。代谢调节机制和生理作用的阐明是理解生活现象的重要基础研究。在工业应用方面,预期对氨基酸组成和含量的控制有助于提高生产率,并加入发酵食品,酒精饮料,生物乙醇和其他有价值的化合物(蛋白质和氨基酸,等等。)。本文主要介绍了我们在构建具有高功能的酵母菌株的研究,重点关注“功能氨基酸”的代谢调节机制和生理作用,例如L-脯氨酸,L-精氨酸,L-亮氨酸,L-缬氨酸,L -cysteine和L-蛋氨酸,在酵母中发现。

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