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首页> 外文期刊>Eukaryotic cell >Growth at High pH and Sodium and Potassium Tolerance in Media above the Cytoplasmic pH Depend on ENA ATPases in Ustilago maydis
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Growth at High pH and Sodium and Potassium Tolerance in Media above the Cytoplasmic pH Depend on ENA ATPases in Ustilago maydis

机译:细胞质pH值高的培养基中高pH和耐钠钾的生长取决于玉米til中的ENA ATPases

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Potassium and Na+ effluxes across the plasma membrane are crucial processes for the ionic homeostasis of cells. In fungal cells, these effluxes are mediated by cation/H+ antiporters and ENA ATPases. We have cloned and studied the functions of the two ENA ATPases of Ustilago maydis, U. maydis Ena1 (UmEna1) and UmEna2. UmEna1 is a typical K+ or Na+ efflux ATPase whose function is indispensable for growth at pH 9.0 and for even modest Na+ or K+ tolerances above pH 8.0. UmEna1 locates to the plasma membrane and has the characteristics of the low-Na+/K+-discrimination ENA ATPases. However, it still protects U. maydis cells in high-Na+ media because Na+ showed a low cytoplasmic toxicity. The UmEna2 ATPase is phylogenetically distant from UmEna1 and is located mainly at the endoplasmic reticulum. The function of UmEna2 is not clear, but we found that it shares several similarities with Neurospora crassa ENA2, which suggests that endomembrane ENA ATPases may exist in many fungi. The expression of ena1 and ena2 transcripts in U. maydis was enhanced at high pH and at high K+ and Na+ concentrations. We discuss that there are two modes of Na+ tolerance in fungi: the high-Na+-content mode, involving ENA ATPases with low Na+/K+ discrimination, as described here for U. maydis, and the low-Na+-content mode, involving Na+-specific ENA ATPases, as in Neurospora crassa.
机译:钾和Na + 穿过质膜的流出是细胞离子稳态的关键过程。在真菌细胞中,这些流出是由阳离子/ H + 反向转运蛋白和ENA ATPases介导的。我们已经克隆并研究了 Ustilago maydis U的两个ENA ATPase的功能。 maydis Ena1(UmEna1)和UmEna2。 UmEna1是典型的K + 或Na + 外排ATPase,其功能对于pH 9.0下的生长乃至适度的Na + 或K <在pH 8.0以上时sup> + 公差。 UmEna1定位于质膜,具有低Na + / K + -区分ENA ATPases的特征。但是,它仍然保护 U。在高Na + 培养基中的maydis 细胞,因为Na + 的细胞质毒性较低。 UmEna2 ATPase在系统发育上与UmEna1距离较远,并且主要位于内质网。 UmEna2的功能尚不清楚,但我们发现它与 Neurospora crassa ENA2有一些相似之处,这表明膜内ENA ATPases可能存在于许多真菌中。 ena1中的 ena1 ena2 转录本的表达。在高pH和高K + 和Na + 浓度下,maydis 均得到增强。我们讨论了真菌对Na + 的耐受性有两种模式:高Na + 含量模式,涉及低Na + / K + 区分,如此处针对 U所述。 maydis 和低Na + 含量模式,涉及Na + 特异的ENA ATPase,如 Neurospora crassa

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