Division of Biological and Biomedical Sciences, College of Health and Life Sciences, Hamad Bin Khalifa University, Education City, Qatar Foundation, P.O. Box: 34110, Doha, Qatar.
Sci Rep. 2022 Jun 15;12(1):10023. doi: 10.1038/s41598-022-14053-9.
Rapamycin is an immunosuppressant used for treating many types of diseases such as kidney carcinomas. In yeast, rapamycin inhibits the TORC1 kinase signaling pathway causing rapid alteration in gene expression and ultimately cell cycle arrest in G through mechanisms that are not fully understood. Herein, we screened a histone mutant collection and report that one of the mutants, H2B R95A, is strikingly resistant to rapamycin due to a defective cell cycle arrest. We show that the H2B R95A causes defects in the expression of a subset of genes of the pheromone pathway required for α factor-induced G arrest. The expression of the STE5 gene and its encoded scaffold protein Ste5, required for the sequential activation of the MAPKs of the pheromone pathway, is greatly reduced in the H2B R95A mutant. Similar to the H2B R95A mutant, cells devoid of Ste5 are also resistant to rapamycin. Rapamycin-induced G arrest does not involve detectable phosphorylation of the MAPKs, Kss1, and Fus3, as reported for α factor-induced G arrest. However, we observed a sharp induction of the G cyclin Cln2 (~ 3- to 4-fold) in the ste5Δ mutant within 30 min of exposure to rapamycin. Our data provide a new insight whereby rapamycin signaling via the Torc1 kinase may exploit the pheromone pathway to arrest cells in the G phase.
雷帕霉素是一种免疫抑制剂,用于治疗多种疾病,如肾细胞癌。在酵母中,雷帕霉素抑制 TORC1 激酶信号通路,导致基因表达迅速改变,并通过尚未完全了解的机制最终导致细胞在 G1 期停滞。在此,我们筛选了组蛋白突变体文库,并报告其中一个突变体 H2B R95A 由于细胞周期阻滞缺陷而对雷帕霉素具有惊人的抗性。我们表明,H2B R95A 导致交配途径中一组基因的表达缺陷,这些基因对于α因子诱导的 G1 期阻滞是必需的。表达 STE5 基因及其编码支架蛋白 Ste5 的能力,对于交配途径中 MAPK 的顺序激活是必需的,在 H2B R95A 突变体中大大降低。类似于 H2B R95A 突变体,缺乏 Ste5 的细胞也对雷帕霉素具有抗性。雷帕霉素诱导的 G1 期阻滞不涉及 MAPK 的可检测磷酸化,如α因子诱导的 G1 期阻滞所报道的那样。然而,我们观察到在暴露于雷帕霉素后 30 分钟内,ste5Δ 突变体中的 G 期周期蛋白 Cln2 急剧诱导(~3-4 倍)。我们的数据提供了一个新的见解,即 Torc1 激酶通过雷帕霉素信号可能利用交配途径将细胞阻滞在 G1 期。