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Reduction of oxidative cellular damage by overexpression of the thioredoxin TRX2 gene improves yield and quality of wine yeast dry active biomass

机译:硫氧还蛋白TRX2基因的过表达减少氧化性细胞损伤,提高了酿酒酵母干活性生物量的产量和质量

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摘要

BackgroundWine Saccharomyces cerevisiae strains, adapted to anaerobic must fermentations, suffer oxidative stress when they are grown under aerobic conditions for biomass propagation in the industrial process of active dry yeast production. Oxidative metabolism of sugars favors high biomass yields but also causes increased oxidation damage of cell components. The overexpression of the TRX2 gene, coding for a thioredoxin, enhances oxidative stress resistance in a wine yeast strain model. The thioredoxin and also the glutathione/glutaredoxin system constitute the most important defense against oxidation. Trx2p is also involved in the regulation of Yap1p-driven transcriptional response against some reactive oxygen species.
机译:背景技术适合于厌氧必须发酵的酿酒酵母菌株在需氧条件下生长以进行活性干酵母生产的工业过程中的生物质繁殖时,会遭受氧化应激。糖类的氧化代谢有利于高生物量产量,但也会引起细胞成分的氧化损伤增加。编码硫氧还蛋白的TRX2基因的过表达增强了葡萄酒酵母菌株模型中的抗氧化应激能力。硫氧还蛋白以及谷胱甘肽/谷胱甘肽毒素系统构成了最重要的抗氧化防御。 Trx2p也参与针对某些活性氧的Yap1p驱动的转录反应的调节。

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