van Aelst L, Jans A W, Thevelein J M
Laboratorium voor Cellulaire Biochemie, Katholieke Universiteit te Leuven, Flanders, Belgium.
J Gen Microbiol. 1991 Feb;137(2):341-9. doi: 10.1099/00221287-137-2-341.
Addition of glucose or related fermentable sugars to derepressed cells of the yeast Saccharomyces cerevisiae triggers a RAS-protein-mediated cAMP signal, which induces a protein phosphorylation cascade. Yeast strains without a functional CDC25 gene were deficient in basal cAMP synthesis and in the glucose-induced cAMP signal. Addition of dinitrophenol, which in wild-type strains strongly stimulates in vivo cAMP synthesis by lowering intracellular pH, did not enhance the cAMP level. cdc25 disruption mutants, in which the basal cAMP level was restored by the RAS2val19 oncogene or by disruption of the gene (PDE2) coding for the high-affinity phosphodiesterase, were still deficient in the glucose- and acidification-induced cAMP responses. These results indicate that the CDC25 gene product is required not only for basal cAMP synthesis in yeast but also for specific activation of cAMP synthesis by the signal transmission pathway leading from glucose to adenyl cyclase. They also show that intracellular acidification stimulates the pathway at or upstream of the CDC25 protein. When shifted to the restrictive temperature, cells with the temperature sensitive cdc25-5 mutation lost their cAMP content within a few minutes. After prolonged incubation at the restrictive temperature, cells with this mutation, and also those with the temperature sensitive cdc25-1 mutation, arrested at the 'start' point (in G1) of the cell cycle, and subsequently accumulated in the resting state G0. In contrast with cdc25-5 cells, however, the cAMP level did not decrease and normal glucose- and acidification-induced cAMP responses were observed when cdc25-1 cells were shifted to the restrictive temperature.(ABSTRACT TRUNCATED AT 250 WORDS)
向经去阻遏的酿酒酵母细胞中添加葡萄糖或相关可发酵糖会触发RAS蛋白介导的cAMP信号,进而诱导蛋白磷酸化级联反应。缺乏功能性CDC25基因的酵母菌株在基础cAMP合成以及葡萄糖诱导的cAMP信号方面存在缺陷。添加二硝基苯酚(在野生型菌株中通过降低细胞内pH强烈刺激体内cAMP合成)并不能提高cAMP水平。在cdc25缺失突变体中,RAS2val19癌基因或编码高亲和力磷酸二酯酶的基因(PDE2)的缺失可恢复基础cAMP水平,但这些突变体在葡萄糖和酸化诱导的cAMP反应方面仍然存在缺陷。这些结果表明,CDC25基因产物不仅是酵母基础cAMP合成所必需的,也是从葡萄糖到腺苷酸环化酶的信号传导途径对cAMP合成进行特异性激活所必需的。它们还表明,细胞内酸化在CDC25蛋白处或其上游刺激该途径。当转移到限制温度时,具有温度敏感型cdc25 - 5突变的细胞在几分钟内失去其cAMP含量。在限制温度下长时间孵育后,具有这种突变的细胞以及具有温度敏感型cdc25 - 1突变的细胞在细胞周期的“起始”点(G1期)停滞,随后积累在静止状态G0。然而,与cdc25 - 5细胞不同,当cdc25 - 1细胞转移到限制温度时,cAMP水平没有下降,并且观察到正常的葡萄糖和酸化诱导的cAMP反应。(摘要截断于250字)