首页> 美国卫生研究院文献>Journal of Bacteriology >Msn2p and Msn4p Control a Large Number of Genes Induced at the Diauxic Transition Which Are Repressed by Cyclic AMP in Saccharomyces cerevisiae
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Msn2p and Msn4p Control a Large Number of Genes Induced at the Diauxic Transition Which Are Repressed by Cyclic AMP in Saccharomyces cerevisiae

机译:Msn2p和Msn4p控制在酿酒酵母中诱导的大量基因这些基因被酿酒酵母中的环AMP抑制

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摘要

The multicopy suppressors of the snf1 defect, Msn2p and Msn4p transcription factors (Msn2/4p), activate genes through the stress-responsive cis element (CCCCT) in response to various stresses. This cis element is also the target for repression by the cyclic AMP (cAMP)-signaling pathway. We analyzed the two-dimensional gel electrophoresis pattern of protein synthesis of the msn2 msn4 double mutant and compared it with that of the wild-type strain during exponential growth phase and at the diauxic transition. Thirty-nine gene products (including those of ALD3, GDH3, GLK1, GPP2, HSP104, HXK1, PGM2, SOD2, SSA3, SSA4, TKL2, TPS1, and YBR149W) are dependent upon Msn2/4p for their induction at the diauxic transition. The expression of all these genes is repressed by cAMP. Thirty other genes identified during this study are still inducible in the mutant. A subset of these genes were found to be superinduced at the diauxic transition, and others were subject to cAMP repression (including ACH1, ADH2, ALD6, ATP2, GPD1, ICL1, and KGD2). We conclude from this analysis that Msn2/4p control a large number of genes induced at the diauxic transition but that other, as-yet-uncharacterized regulators, also contribute to this response. In addition, we show here that cAMP repression applies to both Msn2/4p-dependent and -independent control of gene expression at the diauxic shift. Furthermore, the fact that all the Msn2/4p gene targets are subject to cAMP repression suggests that these regulators could be targets for the cAMP-signaling pathway.
机译:snf1缺陷,Msn2p和Msn4p转录因子(Msn2 / 4p)的多拷贝抑制因子通过响应各种胁迫的胁迫反应性顺式元件(CCCCT)激活基因。该顺式元素也是循环AMP(cAMP)信号通路抑制的靶标。我们分析了msn2 msn4双突变体蛋白质合成的二维凝胶电泳图谱,并将其与野生型菌株在指数生长期和双生过渡期的蛋白质合成进行了比较。 39个基因产物(包括ALD3,GDH3,GLK1,GPP2,HSP104,HXK1,PGM2,SOD2,SSA3,SSA4,TKL2,TPS1和 YBR149W 的基因产物)依赖于Msn2 / 4p它们在双生过渡期的归纳。 cAMP抑制所有这些基因的表达。在这项研究中鉴定出的三十三个其他基因仍可在突变体中诱导。发现这些基因的一个子集在双辅助转变中被超诱导,而其他一些基因则受到cAMP抑制(包括 ACH1 ADH2 ALD6 ATP2 GPD1 ICL1 KGD2 )。从该分析中我们得出结论,Msn2 / 4p控制着在双性转换期间诱导的大量基因,但其他尚未表征的调节子也有助于这种反应。另外,我们在这里表明,cAMP抑制作用适用于双峰移位时基因表达的Msn2 / 4p依赖性和非依赖性控制。此外,所有Msn2 / 4p基因靶标均受到cAMP抑制的事实表明,这些调节子可能是cAMP信号通路的靶标。

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