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Growth Culture Conditions and Nutrient Signaling Modulating Yeast Chronological Longevity

机译:生长培养条件和营养信号调节酵母的长寿

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The manipulation of nutrient-signaling pathways in yeast has uncovered the impact of environmental growth conditions in longevity. Studies using calorie restriction show that reducing glucose concentration of the culture media is sufficient to increase replicative and chronological lifespan (CLS). Other components of the culture media and factors such as the products of fermentation have also been implicated in the regulation of CLS. Acidification of the culture media mainly due to acetic acid and other organic acids production negatively impacts CLS. Ethanol is another fermentative metabolite capable of inducing CLS reduction in aged cells by yet unknown mechanisms. Recently, ammonium was reported to induce cell death associated with shortening of CLS. This effect is correlated to the concentration ofNH4+added to the culture medium and is particularly evident in cells starved for auxotrophy-complementing amino acids. Studies on the nutrient-signaling pathways regulating yeast aging had a significant impact on aging-related research, providing key insights into mechanisms that modulate aging and establishing the yeast as a powerful system to extend knowledge on longevity regulation in multicellular organisms.
机译:酵母中营养信号通路的操纵已揭示了环境生长条件对长寿的影响。使用卡路里限制的研究表明,降低培养基中的葡萄糖浓度足以增加复制性和按时间顺序的寿命(CLS)。培养基的其他成分和因素(例如发酵产物)也与CLS的调节有关。培养基的酸化主要归因于乙酸和其他有机酸的产生,对CLS有负面影响。乙醇是另一种发酵性代谢产物,能够通过未知的机制诱导衰老细胞中CLS的降低。近来,据报道铵诱导与CLS缩短相关的细胞死亡。该作用与添加到培养基中的NH 4 +的浓度有关,并且在缺乏营养缺陷型互补氨基酸的细胞中尤其明显。有关调节酵母衰老的营养信号通路的研究对与衰老相关的研究产生了重大影响,为调节衰老的机制提供了重要见识,并建立了酵母作为扩展多细胞生物寿命调节知识的强大系统。

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