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Lipids and cell death in yeast

机译:酵母中的脂质和细胞死亡

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摘要

Understanding lipid-induced malfunction represents a major challenge of today's biomedical research. The connection of lipids to cellular and organ dysfunction, cell death, and disease (often referred to as lipotoxicity) is more complex than the sole lipotoxic effects of excess free fatty acids and requires genetically tractable model systems for mechanistic investigation. We herein summarize recent advances in the field of lipid-induced toxicity that employ the established model system for cell death and aging research of budding yeast Saccharomyces cerevisiae. Studies in yeast have shed light on various aspects of lipotoxicity, including free fatty acid toxicity, sphingolipid-modulated cell death as well as the involvement of cardiolipin and lipid peroxidation in the mitochondrial pathways of apoptosis. Regimens used range from exogenously applied lipids, genetic modulation of lipolysis and triacylglyceride synthesis, variations in sphingolipid/ceramide metabolism as well as changes in peroxisome function by either genetic or pharmacological means. In future, the yeast model of programmed cell death will further contribute to the clarification of crucial questions of lipid-associated malfunction.
机译:了解脂质引起的功能障碍是当今生物医学研究的主要挑战。脂质与细胞和器官功能障碍,细胞死亡和疾病(通常称为脂毒性)的联系比多余的游离脂肪酸的唯一脂毒性作用更为复杂,并且需要进行遗传学处理的模型系统进行机理研究。我们在本文中总结了脂质诱导的毒性领域中的最新进展,这些进展采用了建立的模型系统来进行芽孢酵母酿酒酵母的细胞死亡和衰老研究。对酵母的研究揭示了脂毒性的各个方面,包括游离脂肪酸的毒性,鞘脂调节的细胞死亡以及心磷脂和脂质过氧化在细胞凋亡的线粒体途径中的参与。使用的方案包括外源性脂质,脂解和三酰基甘油酯合成的遗传调控,鞘脂/神经酰胺代谢的变化以及通过遗传或药理学方法改变​​的过氧化物酶体功能。将来,程序性细胞死亡的酵母模型将进一步有助于阐明与脂质相关的机能障碍的关键问题。

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