首页> 外文期刊>Molecular biology of the cell >A constitutive active allele of the transcription factor Msn2 mimicking low PKA activity dictates metabolic remodeling in yeast
【24h】

A constitutive active allele of the transcription factor Msn2 mimicking low PKA activity dictates metabolic remodeling in yeast

机译:模仿低pKa活性的转录因子MSN2的组成型活性等位基因决定了酵母中的代谢重塑

获取原文
           

摘要

In yeast, protein kinase A (PKA) adjusts transcriptional profiles, metabolic rates, and cell growth in accord with carbon source availability. PKA affects gene expression mostly via the transcription factors Msn2 and Msn4, two key regulators of the environmental stress response. Here we analyze the role of the PKA-Msn2 signaling module using an Msn2 allele that harbors serine-to-alanine substitutions at six functionally important PKA motifs (Msn2A6). Expression of Msn2A6 mimics low PKA activity, entails a transcription profile similar to that of respiring cells, and prevents formation of colonies on glucose-containing medium. Furthermore, Msn2A6 leads to high oxygen consumption and hence high respiratory activity. Substantially increased intracellular concentrations of several carbon metabolites, such as trehalose, point to a metabolic adjustment similar to diauxic shift. This partial metabolic switch is the likely cause for the slow-growth phenotype in the presence of glucose. Consistently, Msn2A6 expression does not interfere with growth on ethanol and tolerated is to a limited degree in deletion mutant strains with a gene expression signature corresponding to nonfermentative growth. We propose that the lethality observed in mutants with hampered PKA activity resides in metabolic reprogramming that is initiated by Msn2 hyperactivity.
机译:在酵母中,蛋白激酶A(PKA)根据碳源可用性调整转录谱,代谢率和细胞生长。 PKA主要通过转录因子MSN2和MSN4影响基因表达,两个关键调节器的环境应力反应。在这里,我们使用六个功能重要的PKA基序(MSN2a6)的MSN2等位基因使用杀菌与丙氨酸取代的MSN2等位基因来分析PKA-MSN2信号传导模块的作用。 MSN2A6模拟低PKA活性的表达,需要类似于呼吸细胞的转录轮廓,并防止在含葡萄糖培养基上形成菌落。此外,MSN2A6导致高氧消耗,因此高呼吸活动。基本上增加了几种碳代谢物的细胞内浓度,例如海藻糖,指向类似于辅助偏移的代谢调整。这种部分代谢开关是葡萄糖存在下缓慢生长表型的可能原因。始终如一地,MSN2A6表达不会干扰乙醇的生长,并且耐受的是缺失突变体菌株的有限程度,其基因表达签名对应于非灭系生长。我们建议在突变体中观察到具有阻碍的PKA活性的致死性存在于由MSN2多动引发的代谢重编程。

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