Boguslawski G
Department of Medicine, Indiana University School of Medicine, Indianapolis 46202.
J Gen Microbiol. 1992 Nov;138(11):2425-32. doi: 10.1099/00221287-138-11-2425.
The yeast gene PBS2 encodes a presumed protein kinase. The gene is essential for manifestation of resistance to the antibiotic polymyxin B. Deletion of PBS2 enables a ras2-530 null mutant to grow on nonfermentable carbon sources; overexpression of PBS2+ enhances viability of a RAS2Val19 mutant. Overexpression of PBS2+ also diminishes cellular response to mating pheromone MF alpha. These results suggest that the PBS2 and RAS2 genes affect a common pathway that may communicate with the pheromone response pathway. In addition, disruption of PBS2 renders cells sensitive to high osmolarity: exposure to 0.9 M-NaCl causes growth arrest, appearance of bizarre morphological forms, and eventual death. A mutation suppressing pbs2 deletion has been found. That mutation restores full polymyxin B resistance but only partially corrects the osmotic sensitivity defect. These observations indicate that PBS2 is involved in diverse physiological pathways in yeast.
酵母基因PBS2编码一种推测的蛋白激酶。该基因对于表现出对抗生素多粘菌素B的抗性至关重要。删除PBS2可使ras2 - 530无效突变体在不可发酵的碳源上生长;PBS2 +的过表达增强了RAS2Val19突变体的活力。PBS2 +的过表达还会减少细胞对交配信息素MFα的反应。这些结果表明,PBS2和RAS2基因影响一个可能与信息素反应途径相互作用的共同途径。此外,PBS2的破坏使细胞对高渗透压敏感:暴露于0.9 M - NaCl会导致生长停滞、出现怪异的形态形式并最终死亡。已发现一种抑制pbs2缺失的突变。该突变恢复了对多粘菌素B的完全抗性,但仅部分纠正了渗透敏感性缺陷。这些观察结果表明,PBS2参与酵母中的多种生理途径。