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首页> 外文期刊>FEBS Letters >Expression regulation of the yeast PDR5 ATP‐binding cassette (ABC) transporter suggests a role in cellular detoxification during the exponential growth phase
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Expression regulation of the yeast PDR5 ATP‐binding cassette (ABC) transporter suggests a role in cellular detoxification during the exponential growth phase

机译:酵母PDR5 ATP结合盒(ABC)转运蛋白的表达调控表明在指数生长期中细胞解毒中的作用

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>The yeast ATP-binding cassette transporter Pdr5p mediates pleiotropic drug resistance (PDR) by effluxing a variety of xenobiotics. Immunoblotting demonstrates that Pdr5p levels are high in the logarithmic growth phase, while its levels decrease sharply when cells exit exponential growth. Here, we show that PDR5 promoter activity is dramatically reduced when cells stop growing due to a limitation of glucose or nitrogen or when they approach stationary phase. Interestingly, Pdr3p, a major transcriptional regulator of PDR5, shows the same regulatory pattern. Feeding glucose to starved cells rapidly re-induces both PDR5 and PDR3 transcription. Importantly, diminished Pdr5p levels, as present after starvation, are rapidly restored in response to xenobiotic challenges that activate the transcription factors Pdr1p and Pdr3p. Our data indicate a role for yeast Pdr5p in cellular detoxification during exponential growth.
机译:酵母ATP结合盒转运蛋白Pdr5p通过释放多种异生物而介导多效药物耐药性(PDR)。免疫印迹表明,Pdr5p在对数生长期处于较高水平,而当细胞退出指数生长时,其水平则急剧下降。在这里,我们显示当细胞由于葡萄糖或氮的限制或接近稳定期而停止生长时, PDR5 启动子活性会大大降低。有趣的是, PDR5 的主要转录调节子Pdr3p显示了相同的调节模式。向饥饿的细胞补充葡萄糖会迅速诱导 PDR5 PDR3 转录。重要的是,饥饿后出现的减少的Pdr5p水平会迅速恢复,以响应激活转录因子Pdr1p和Pdr3p的异源生物挑战。我们的数据表明酵母Pdr5p在指数生长过程中在细胞排毒中的作用。

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