Proft M, Kötter P, Hedges D, Bojunga N, Entian K D
Institut für Mikrobiologie der Johann Wolfgang Goethe-Universität Frankfurt, Frankfurt am Main, Germany.
EMBO J. 1995 Dec 15;14(24):6116-26. doi: 10.1002/j.1460-2075.1995.tb00302.x.
PCK1 encoding phosphoenolpyruvate carboxykinase is transcriptionally regulated by two upstream activating elements. By screening for mutants that failed to derepress a UAS2PCK1-CYC1-lacZ reporter gene we isolated the new recessive derepression mutation cat5. The CAT5 gene encodes a protein of 272 amino acids showing a 42% identity to the ZC395.2 gene product of Caenorhabditis elegans whose function is unknown. Deletion of CAT5 caused a complete loss of glucose derepression affecting gluconeogenic key enzymes. Respiration, but not mitochondrial cytochrome c oxidase activity, was also affected. CAT5 expression is 5- to 6-fold repressed by glucose, and CAT5 transcriptional activation was dependent on CAT1 (SNF1), CAT8 and CAT5 itself. The CAT5 gene is necessary for UAS1PCK1 and UAS2PCK1 protein binding since a carbon source-specific interaction was no longer detectable in cat5 mutants. Glucose derepression of gluconeogenesis depends on the active Cat1 (Snf1) protein kinase and the Cat8 zinc cluster activator. Mig1p-independent overexpression of CAT8 did not stimulate activation of gluconeogenic promoters in cat1 and in cat5 mutants. Since Cat8p multicopy expression suppresses the ethanol growth deficiency in cat1 (snf1) mutants, these results indicate that activation of Cat8p by the Cat1p (Snf1p) kinase and the Cat5p protein might be necessary for release from glucose repression.
编码磷酸烯醇丙酮酸羧激酶的PCK1受两个上游激活元件的转录调控。通过筛选未能解除UAS2PCK1 - CYC1 - lacZ报告基因抑制的突变体,我们分离出了新的隐性去抑制突变体cat5。CAT5基因编码一种由272个氨基酸组成的蛋白质,与秀丽隐杆线虫功能未知的ZC395.2基因产物有42%的同一性。CAT5的缺失导致葡萄糖去抑制完全丧失,影响糖异生关键酶。呼吸作用受到影响,但线粒体细胞色素c氧化酶活性不受影响。CAT5的表达受葡萄糖抑制5至6倍,并且CAT5的转录激活依赖于CAT1(SNF1)、CAT8和CAT5自身。CAT5基因对于UAS1PCK1和UAS2PCK1蛋白结合是必需的,因为在cat5突变体中不再能检测到碳源特异性相互作用。糖异生的葡萄糖去抑制依赖于活性Cat1(Snf1)蛋白激酶和Cat8锌簇激活剂。在cat1和cat5突变体中,CAT8的Mig1p非依赖性过表达并未刺激糖异生启动子的激活。由于Cat8p多拷贝表达抑制了cat1(snf1)突变体中的乙醇生长缺陷,这些结果表明Cat1p(Snf1p)激酶和Cat5p蛋白对Cat8p的激活可能是从葡萄糖抑制中释放所必需的。