Cade R M, Errede B
Department of Chemistry, University of North Carolina, Chapel Hill 27599.
Mol Cell Biol. 1994 May;14(5):3139-49. doi: 10.1128/mcb.14.5.3139-3149.1994.
Pheromones induce haploid cells of Saccharomyces cerevisiae to differentiate into a mating-competent state. Ste11p is one of several protein kinases required to transmit the pheromone-induced signal and to maintain basal expression of certain mating-specific genes in the absence of pheromone stimulation. To identify potential regulators of Ste11p, we screened for suppressors that restored mating and basal transcriptional competence to a strain with a conditionally functional Ste11p. This screen uncovered a novel gene we call MOT2, for modulator of transcription. A mot2 deletion mutation leads to modest increases in the basal amounts of mRNA for several pheromone-responsive genes. Yet mot2 deletion does not affect the signal transmission activity of the pathway in either the presence or absence of pheromone stimulation. Therefore, we propose that Mot2p, directly or indirectly, represses basal transcription of certain mating-specific genes. Because mot2 deletion mutants also have a conditional cell lysis phenotype, we expect that Mot2p regulatory effects may be more global than for mating-specific gene expression.
信息素可诱导酿酒酵母的单倍体细胞分化为具备交配能力的状态。Ste11p是传递信息素诱导信号以及在无信息素刺激时维持某些交配特异性基因基础表达所需的几种蛋白激酶之一。为了鉴定Ste11p的潜在调节因子,我们筛选了能恢复具有条件性功能的Ste11p菌株的交配和基础转录能力的抑制子。该筛选发现了一个我们称为MOT2(转录调节因子)的新基因。mot2缺失突变导致几个信息素反应基因的基础mRNA量适度增加。然而,无论有无信息素刺激,mot2缺失均不影响该信号通路的信号传递活性。因此,我们推测Mot2p直接或间接抑制某些交配特异性基因的基础转录。由于mot2缺失突变体也具有条件性细胞裂解表型,我们预计Mot2p的调节作用可能比交配特异性基因表达更为广泛。