Laboratory of Genetics, University of Wisconsin-Madison, Wisconsin 53706, USA.
G3 (Bethesda). 2012 Dec;2(12):1607-12. doi: 10.1534/g3.112.004127. Epub 2012 Dec 1.
The Crabtree effect, in which fermentative metabolism is preferred at the expense of respiration, is a hallmark of budding yeast's glucose response and a model for the Warburg effect in human tumors. While the glucose-responsive transcriptional repressors Mig1p and Mig2p play well-characterized roles in the Crabtree effect, little function for the related Mig3p transcription factor has been uncovered, despite numerous investigations of laboratory yeast strains. Here we studied a wild isolate of Saccharomyces cerevisiae to uncover a critical role for Mig3p that has been lost in S288c-derived laboratory strains. We found that Mig3p affects the expression of hundreds of glucose-responsive genes in the oak strain YPS163, both during growth under standard conditions and upon ethanol treatment. Our results suggest that Mig3p may act as a multifunctional activator/repressor that plays separate roles under standard vs. stress conditions and that this function has been largely lost in the lab strains. Population analysis suggests that the lab strain and several wild strains harbor mutations that diminish Mig3p function. Thus, by expanding our attention to multiple genetic backgrounds, we have uncovered an important missing link in a key metabolic response.
Crabtree 效应是指在发酵代谢途径中优先选择消耗葡萄糖,而不是进行呼吸作用,这是 budding yeast 对葡萄糖响应的一个标志,也是人类肿瘤中 Warburg 效应的模型。虽然葡萄糖响应的转录阻遏物 Mig1p 和 Mig2p 在 Crabtree 效应中扮演着重要的角色,但与之相关的 Mig3p 转录因子的功能却很少被揭示,尽管已经对实验室酵母菌株进行了大量研究。在这里,我们研究了一种野生 Saccharomyces cerevisiae 菌株,以揭示 Mig3p 的一个关键作用,而这个作用在 S288c 衍生的实验室菌株中已经丢失。我们发现 Mig3p 影响了 oak 菌株 YPS163 中数百个葡萄糖响应基因的表达,无论是在标准条件下生长还是在乙醇处理时。我们的结果表明,Mig3p 可能作为一个多功能的激活/阻遏物,在标准和应激条件下发挥不同的作用,而这种功能在实验室菌株中已经基本丧失。群体分析表明,实验室菌株和几个野生菌株都存在导致 Mig3p 功能减弱的突变。因此,通过将我们的注意力扩展到多个遗传背景,我们揭示了一个关键代谢反应中一个重要的缺失环节。