首页> 外文期刊>Nucleic acids research >The cellular growth rate controls overall mRNA turnover, and modulates either transcription or degradation rates of particular gene regulons
【24h】

The cellular growth rate controls overall mRNA turnover, and modulates either transcription or degradation rates of particular gene regulons

机译:细胞的生长速度控制着总的mRNA转换,并调节特定基因调节子的转录或降解速度

获取原文
           

摘要

We analyzed 80 different genomic experiments, and found a positive correlation between both RNA polymerase II transcription and mRNA degradation with growth rates in yeast. Thus, in spite of the marked variation in mRNA turnover, the total mRNA concentration remained approximately constant. Some genes, however, regulated their mRNA concentration by uncoupling mRNA stability from the transcription rate. Ribosome-related genes modulated their transcription rates to increase mRNA levels under fast growth. In contrast, mitochondria-related and stress-induced genes lowered mRNA levels by reducing mRNA stability or the transcription rate, respectively. We also detected these regulations within the heterogeneity of a wild-type cell population growing in optimal conditions. The transcriptomic analysis of sorted microcolonies confirmed that the growth rate dictates alternative expression programs by modulating transcription and mRNA decay. The regulation of overall mRNA turnover keeps a constant ratio between mRNA decay and the dilution of [mRNA] caused by cellular growth. This regulation minimizes the indiscriminate transmission of mRNAs from mother to daughter cells, and favors the response capacity of the latter to physiological signals and environmental changes. We also conclude that, by uncoupling mRNA synthesis from decay, cells control the mRNA abundance of those gene regulons that characterize fast and slow growth.
机译:我们分析了80个不同的基因组实验,发现RNA聚合酶II转录和mRNA降解与酵母生长速率之间呈正相关。因此,尽管mRNA转换的显着变化,但是总mRNA浓度保持大致恒定。但是,某些基因通过使mRNA稳定性与转录速率脱钩来调节其mRNA浓度。核糖体相关基因在快速生长下调节其转录速率以增加mRNA水平。相反,线粒体相关基因和应激诱导基因分别通过降低mRNA稳定性或降低转录速率降低了mRNA水平。我们还在最佳条件下生长的野生型细胞群体的异质性中检测到这些法规。排序的微菌落的转录组学分析证实,生长速率通过调节转录和mRNA衰减来决定其他表达程序。总体mRNA转换的调节使mRNA衰变与细胞生长引起的[mRNA]稀释之间保持恒定的比率。这种调节最小化了从母体到子代细胞的不加选择的mRNA传递,并有利于后者对生理信号和环境变化的响应能力。我们还得出结论,通过将mRNA合成与衰变解耦,细胞可以控制那些以快速和慢速生长为特征的基因调节子的mRNA丰度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号