SPO, Université Montpellier, INRA, Montpellier SupAgro, 34060 Montpellier, France
SPO, Université Montpellier, INRA, Montpellier SupAgro, 34060 Montpellier, France.
Mol Biol Cell. 2018 Feb 15;29(4):490-498. doi: 10.1091/mbc.E17-01-0061. Epub 2017 Dec 27.
Nitrogen replenishment of nitrogen-starved yeast cells resulted in substantial transcriptome changes. There was an unexplained rapid, transient down-regulation of glycolytic genes. This unexpected result prompted us to search for the factors controlling these changes, among which is the possible involvement of different nutrient-sensing pathways such as the TORC1 and cAMP/PKA pathways. To that end, the effects of various gene deletions or chemical blocking agents were tested by investigating the expression of , one of the glycolytic genes most affected after nitrogen replenishment. We report here that several factors affected glycolytic mRNA stability, among which were glucose sensing, protein elongation, nitrogen metabolism, and TOR signaling. Ammonium sensing was not involved in the response, but ammonium metabolism was required. Thus, our results suggest that, in the presence of glucose, carbon/nitrogen cross-talk is likely involved in the response to nitrogen upshift. Our data suggest that posttranscriptional control of glycolytic gene expression may be an important response to nitrogen replenishment.
氮饥饿的酵母细胞进行氮源补充会导致其转录组发生显著变化。其中,糖酵解基因会出现一种无法解释的快速、短暂的下调。这一意外结果促使我们去寻找控制这些变化的因素,其中可能涉及不同的营养感应途径,如 TORC1 和 cAMP/PKA 途径。为此,我们通过研究受氮源补充影响最大的糖酵解基因之一 的表达情况,测试了各种基因缺失或化学阻断剂的影响。我们在这里报告,有几个因素会影响糖酵解 mRNA 的稳定性,其中包括葡萄糖感应、蛋白质延伸、氮代谢和 TOR 信号。氨感应不参与该反应,但氨代谢是必需的。因此,我们的结果表明,在有葡萄糖存在的情况下,碳/氮交叉对话可能参与了对氮供应增加的反应。我们的数据表明,糖酵解基因表达的转录后调控可能是对氮源补充的一个重要反应。