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首页> 外文期刊>FEMS Yeast Research >Measurements of plasma membrane potential changes in Saccharomyces cerevisiae cells reveal the importance of the Tok1 channel in membrane potential maintenance
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Measurements of plasma membrane potential changes in Saccharomyces cerevisiae cells reveal the importance of the Tok1 channel in membrane potential maintenance

机译:酿酒酵母细胞质膜电位变化的测量揭示了Tok1通道在膜电位维持中的重要性

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K+ is one of the cations (besides protons) whose transport across the plasma membrane is believed to contribute to the maintenance of membrane potential. To ensure K+ transport, Saccharomyces cerevisiae cells possess several types of active and passive transporters mediating the K+ influx and efflux, respectively. A diS-C3(3) assay was used to compare the contributions of various potassium transporters to the membrane potential changes of S. cerevisiae cells in the exponential growth phase. Altogether, the contributions of six K+ transporters to the maintenance of a stable membrane potential were tested. As confirmed by the observed hyperpolarization of trk1 trk2 deletion strains, the diS-C3(3) assay is a suitable method for comparative studies of the membrane potential of yeast strains differing in the presence/absence of one or more cation transporters. We have shown that the presence of the Tok1 channel strongly influences membrane potential: deletion of the TOK1 gene results in significant plasma membrane depolarization, whereas strains overexpressing the TOK1 gene are hyperpolarized. We have also proved that plasma membrane potential is not the only parameter determining the hygromycin B sensitivity of yeast cells, and that the role of intracellular transporters in protecting against its toxic effects must also be considered.
机译:K +是阳离子(质子除外)之一,其跨质膜的传输有助于维持膜电位。为了确保K +转运,酿酒酵母细胞具有几种介导K +流入和流出的主动和被动转运蛋白。使用diS-C3(3)分析法比较各种钾转运蛋白对酿酒酵母细胞在指数生长期膜电位变化的贡献。总共测试了六个K +转运蛋白对维持稳定膜电位的贡献。正如观察到的trk1 trk2缺失菌株的超极化所证实的那样,diS-C3(3)测定法是比较研究存在或不存在一种或多种阳离子转运蛋白的酵母菌株膜电位的合适方法。我们已经表明,Tok1通道的存在强烈影响膜电位:TOK1基因的缺失导致明显的质膜去极化,而过表达TOK1基因的菌株是超极化的。我们还证明,质膜电位不是决定酵母细胞潮霉素B敏感性的唯一参数,还必须考虑细胞内转运蛋白在防止其毒性作用方面的作用。

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