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Impact of forced fatty acid synthesis on metabolism and physiology of Saccharomyces cerevisiae

机译:强制脂肪酸合成对酿酒酵母酿酒酵母代谢及生理学影响的影响

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摘要

Nutrient sensing and signaling controls the cellular response to extracellular nutrients and intracellular metabolites. Nutrient-dependent regulation of metabolism ensures balanced energy production and expenditure. We show that disturbing energy balance by forcing fatty acid synthesis has profound impact on metabolism and physiology of the yeast cell. In addition to an expected increase in storage lipids, we observed increased beta-oxidation and reduced amino acid biosynthesis, indicating increased activity of nutrient-sensitive kinase Snf1p. We also observed increased sensitivity to rapamycin as well as decreased ribosome biogenesis and translation, indicating reduced activity of nutrient-sensitive kinase target of rapamycin complex 1. Additionally, we detected increased levels of oxidative stress and lower levels of amino acids. This study provides detailed insight into cellular resource redistribution in response to forced fatty acid synthesis and enables optimized engineering of microbial lipid production.
机译:营养传感和信号控制对细胞外营养和细胞内代谢物的细胞反应。营养依赖性调节代谢可确保均衡的能源生产和支出。我们表明,通过迫使脂肪酸合成的令人不安的能量平衡对酵母细胞的代谢和生理学产生了深远的影响。除了储存脂质的预期增加外,我们观察到增加的β-氧化和降低的氨基酸生物合成,表明营养敏感激酶SNF1P的活性增加。我们还观察到增加对雷帕霉素的敏感性以及降低的核糖体生物发生和翻译,表明雷帕霉素络合物的营养敏感激酶靶的活性减少1。另外,我们检测到增加的氧化应激水平和较低水平的氨基酸水平。本研究提供了对响应强制脂肪酸合成的细胞资源再分配的详细洞察,并能够优化微生物脂质生产工程。

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