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The Mother Enrichment Program: A Genetic System for Facile Replicative Life Span Analysis in Saccharomyces cerevisiae

机译:母亲致富计划:酿酒酵母的简单复制寿命分析的遗传系统。

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摘要

The replicative life span (RLS) of Saccharomyces cerevisiae has been established as a model for the genetic regulation of longevity despite the inherent difficulty of the RLS assay, which requires separation of mother and daughter cells by micromanipulation after every division. Here we present the mother enrichment program (MEP), an inducible genetic system in which mother cells maintain a normal RLS—a median of 36 generations in the diploid MEP strain—while the proliferative potential of daughter cells is eliminated. Thus, the viability of a population over time becomes a function of RLS, and it displays features of a survival curve such as changes in hazard rate with age. We show that viability of mother cells in liquid culture is regulated by SIR2 and FOB1, two opposing regulators of RLS in yeast. We demonstrate that viability curves of these short- and long-lived strains can be easily distinguished from wild type, using a colony formation assay. This provides a simplified screening method for identifying genetic or environmental factors that regulate RLS. Additionally, the MEP can provide a cohort of cells at any stage of their life span for the analysis of age-associated phenotypes. These capabilities effectively remove the hurdles presented by RLS analysis that have hindered S. cerevisiae aging studies since their inception 50 years ago.
机译:尽管RLS分析存在固有的困难,但酿酒酵母的复制寿命(RLS)已被确立为长寿遗传调节的模型,这需要在每次分裂后通过显微操作来分离母细胞和子细胞。在这里,我们介绍了母本富集程序(MEP),这是一种可诱导的遗传系统,其中母细胞维持正常的RLS(二倍体MEP株中的36代中值),而子细胞的增殖潜力被消除了。因此,随着时间的推移,种群的生存能力成为RLS的函数,并且它显示了生存曲线的特征,例如随着年龄的增长,危险率的变化。我们表明,液体培养中母细胞的活力受SIR2和FOB1(酵母中RLS的两个相对调节剂)的调节。我们证明,这些短寿命和长寿命菌株的生存力曲线可以很容易地与野生型区分开,使用菌落形成试验。这提供了一种简化的筛选方法,用于识别调节RLS的遗传或环境因素。另外,MEP可以在其生命周期的任何阶段提供一组细胞,用于分析与年龄相关的表型。这些功能有效地消除了RLS分析提出的障碍,这些障碍自50年前开始以来就已经阻碍了酿酒酵母的衰老研究。

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