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酿酒酵母转录激活因子Cat8p的变体对糖异生结构基因的调控异常

Deregulation of gluconeogenic structural genes by variants of the transcriptional activator Cat8p of the yeast Saccharomyces cerevisiae.

作者信息

Rahner A, Hiesinger M, Schüller H J

机构信息

Institut für Genetik und Biochemie, Ernst-Moritz-Arndt Universität Greifswald, F.-L.-Jahnstrasse 15a, D-17487 Greifswald, Germany.

出版信息

Mol Microbiol. 1999 Oct;34(1):146-56. doi: 10.1046/j.1365-2958.1999.01588.x.

Abstract

In the yeast Saccharomyces cerevisiae, growth with a non-fermentable carbon source requires co-ordinate transcriptional activation of gluconeogenic structural genes by an upstream activation site (UAS) element, designated CSRE (carbon source-responsive element). The zinc cluster protein encoded by CAT8 is necessary for transcriptional derepression mediated by a CSRE. Expression of CAT8 as well as transcriptional activation by Cat8p is regulated by the carbon source, requiring a functional Cat1p (= Snf1p) protein kinase. The importance of both regulatory levels was investigated by construction of CAT8 variants with a constitutive transcriptional activation domain (INO2TAD) and/or a carbon source-independent promoter (MET25 ). Whereas a reporter gene driven by a CSRE-dependent synthetic minimal promoter showed a 40-fold derepression with wild-type CAT8, an almost constitutive expression was found with a MET25-CAT8-INO2TAD fusion construct due to a dramatically increased gene activation under conditions of glucose repression. Similar results were obtained with the mRNA of the isocitrate lyase gene ICL1 and at the level of ICL enzyme activity. Taking advantage of a Cat8p size variant, we demonstrate its binding to the CSRE. Our data show that carbon source-dependent transcriptional activation by Cat8p is the most important mechanism affecting the regulated expression of gluconeogenic structural genes.

摘要

在酿酒酵母中,利用非发酵性碳源生长需要通过一个上游激活位点(UAS)元件(称为碳源响应元件,CSRE)对糖异生结构基因进行协同转录激活。由CAT8编码的锌簇蛋白对于CSRE介导的转录去抑制是必需的。CAT8的表达以及Cat8p介导的转录激活受碳源调控,需要功能性的Cat1p(= Snf1p)蛋白激酶。通过构建具有组成型转录激活结构域(INO2TAD)和/或碳源非依赖性启动子(MET25)的CAT8变体,研究了这两种调控水平的重要性。由CSRE依赖性合成最小启动子驱动的报告基因在野生型CAT8存在下显示出40倍的去抑制,而由于在葡萄糖抑制条件下基因激活显著增加,MET25-CAT8-INO2TAD融合构建体显示出几乎组成型的表达。在异柠檬酸裂解酶基因ICL1的mRNA水平以及ICL酶活性水平上也获得了类似的结果。利用一种Cat8p大小变体,我们证明了它与CSRE的结合。我们的数据表明,Cat8p介导的碳源依赖性转录激活是影响糖异生结构基因调控表达的最重要机制。

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