首页> 美国卫生研究院文献>FEMS Yeast Research >Robust pleiotropic drug resistance 5 (Pdr5)-mediated multidrug resistance is vigorously maintained in Saccharomyces cerevisiae cells during glucose and nitrogen limitation
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Robust pleiotropic drug resistance 5 (Pdr5)-mediated multidrug resistance is vigorously maintained in Saccharomyces cerevisiae cells during glucose and nitrogen limitation

机译:在葡萄糖和氮限制期间酿酒酵母细胞中强烈维持了多效耐药5(Pdr5)介导的多药耐药性

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摘要

Saccharomyces cerevisiae has sophisticated nutrient-sensing programs for responding to harsh environments containing limited nutrients. As a result, yeast cells can live in diverse environments, including animals, as a commensal or a pathogen. Because they live in mixed populations with other organisms that excrete toxic chemicals, it is of interest to know whether yeast cells maintain functional multidrug resistance mechanisms during nutrient stress. We measured the activity of Pdr5, the major Saccharomyces drug efflux pump under conditions of limiting nutrients. We demonstrate that the steady-state level of this transporter remains unchanged during growth in low concentrations of glucose and nitrogen even though two-dimensional gel electrophoresis revealed a decrease in the level of many proteins. We also evaluated rhodame 6G transport and resistance to three xenobiotic agents in rich (synthetic dextrose) and starvation medium. We demonstrate that Pdr5 function is vigorously maintained under both sets of conditions.
机译:酿酒酵母具有复杂的营养感测程序,可应对含有有限营养素的恶劣环境。结果,酵母细胞可以作为共生或病原体生活在包括动物在内的多种环境中。由于它们与其他会排放有毒化学物质的生物生活在混合种群中,因此有必要知道酵母细胞在营养胁迫期间是否维持功能性的多药耐药机制。我们在限制养分的条件下测量了主要酵母菌外排泵Pdr5的活性。我们证明,即使二维凝胶电泳显示许多蛋白质水平下降,该转运蛋白的稳态水平在低浓度葡萄糖和氮的生长过程中也保持不变。我们还评估了丰富(合成右旋糖)和饥饿培养基中若丹明6G的转运以及对三种异生素的抗性。我们证明了在两种情况下均能大力维持Pdr5功能。

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