Gounalaki N, Thireos G
Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology, Crete, Greece.
EMBO J. 1994 Sep 1;13(17):4036-41. doi: 10.1002/j.1460-2075.1994.tb06720.x.
Overexpression of the YAP1 transcriptional activator renders yeast cells resistant to multiple metabolic inhibitors. In an effort to identify other gene products required for this phenotype we have isolated genomic mutations which neutralize this effect. One such mutation was further characterized and the affected gene was shown to be identical to TPS2 which encodes trehalose phosphate phosphatase, an enzyme catalysing the second step in trehalose biosynthesis. We have analysed the transcriptional regulation of the TPS2 gene and have shown that its transcription is induced by a variety of stressful conditions caused by metabolic inhibitors, osmotic shock and heat shock. This transcriptional activation is mediated by multiple stress promoter elements (C4T) and requires the function of Yap1p as well as reduced activity of the cAMP-regulated protein kinase. Using an appropriate reporter gene we have shown that Yap1p is generally required for transcriptional regulation through the C4T stress element. These results show that the YAP1 protein has a pivotal role in the metabolic stress response and the acquisition of stress tolerance.
YAP1转录激活因子的过表达使酵母细胞对多种代谢抑制剂产生抗性。为了鉴定这种表型所需的其他基因产物,我们分离了中和这种效应的基因组突变。对其中一个这样的突变进行了进一步表征,结果表明受影响的基因与TPS2相同,TPS2编码海藻糖磷酸磷酸酶,该酶催化海藻糖生物合成的第二步。我们分析了TPS2基因的转录调控,结果表明其转录受到代谢抑制剂、渗透压休克和热休克等多种应激条件的诱导。这种转录激活由多个应激启动子元件(C4T)介导,并且需要Yap1p的功能以及cAMP调节的蛋白激酶的活性降低。使用合适的报告基因,我们表明Yap1p通常是通过C4T应激元件进行转录调控所必需的。这些结果表明,YAP1蛋白在代谢应激反应和应激耐受性的获得中起关键作用。