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一种假定的蛋白激酶克服了信息素诱导的酿酒酵母细胞周期停滞。

A putative protein kinase overcomes pheromone-induced arrest of cell cycling in S. cerevisiae.

作者信息

Courchesne W E, Kunisawa R, Thorner J

机构信息

Department of Biochemistry, University of California, Berkeley 94720.

出版信息

Cell. 1989 Sep 22;58(6):1107-19. doi: 10.1016/0092-8674(89)90509-6.

Abstract

MATa cells carrying an sst2 mutation are unable to recover from the G1-specific cell cycle arrest induced by the mating pheromone alpha factor. The KSS1 gene, when overexpressed, suppresses this adaptation defect. KSS1 overexpression also suppresses the recovery defect manifested by cells expressing an alpha factor receptor lacking its 136 amino acid cytoplasmic tail. Because SST2 product and the receptor tail contribute independently to events that allow recovery from pheromone-induced growth arrest, KSS1 function defines a third independent process that promotes desensitization. The KSS1 gene encodes an apparent protein kinase homologous to the CDC28 (S. cerevisiae) and cdc2+ (S. pombe) gene products. The recovery-promoting activity of the KSS1 gene requires a functional WHI1 gene, which encodes a yeast homolog to animal cyclins, suggesting that the KSS1 and WHI1 proteins act in the same growth control pathway.

摘要

携带sst2突变的MATa细胞无法从由交配信息素α因子诱导的G1特异性细胞周期停滞中恢复。KSS1基因在过表达时可抑制这种适应性缺陷。KSS1过表达还可抑制表达缺乏136个氨基酸胞质尾的α因子受体的细胞所表现出的恢复缺陷。由于SST2产物和受体尾对从信息素诱导的生长停滞中恢复的事件有独立贡献,KSS1功能定义了促进脱敏的第三个独立过程。KSS1基因编码一种明显的蛋白激酶,与CDC28(酿酒酵母)和cdc2 +(粟酒裂殖酵母)基因产物同源。KSS1基因的恢复促进活性需要功能性的WHI1基因,该基因编码与动物细胞周期蛋白同源的酵母蛋白,这表明KSS1和WHI1蛋白在相同的生长控制途径中起作用。

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