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首页> 外文期刊>Biocontrol Science and Technology >Yeast Kch1 and Kch2 membrane proteins play a pleiotropic role in membrane potential establishment and monovalent cation homeostasis regulation
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Yeast Kch1 and Kch2 membrane proteins play a pleiotropic role in membrane potential establishment and monovalent cation homeostasis regulation

机译:酵母KCH1和KCH2膜蛋白在膜潜在建立和单价阳离子稳态调节中起着肺炎作用

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The Kch1 and Kch2 plasma-membrane proteins were identified in Saccharomyces cerevisiae as being essential for the activation of a high-affinity Ca2+ influx system. We searched for Kch proteins roles in the maintenance of cation homeostasis and tested the effect of kch1 and/or kch2 deletions on various physiological parameters. Compared to wild-type, kch1 kch2 mutant cells were smaller, relatively hyperpolarised, grew better under limited K+ conditions and exhibited altered growth in the presence of monovalent cations. The absence of Kch1 and Kch2 did not change the intracellular pH in cells growing at low potassium or the tolerance of cells to divalent cations, high concentration of sorbitol or extreme external pH. The overexpression of KCH1 only increased the intracellular pH in the presence of elevated K+ in media. None of the phenotypes associated with the deletion of KCH1 and KCH2 in wild type were observed in a strain lacking KCH genes and main K+ uptake systems Trk1 and Trk2. The role of the Kch homologue in cation homeostasis was also tested in Candida albicans cells. Our data demonstrate that Kch proteins significantly contribute to the maintenance of optimal cation homeostasis and membrane potential in S. cerevisiae but not in C. albicans.
机译:KCH1和KCH2血浆蛋白在酿酒酵母中鉴定为酿酒酵母中的酿酒酵母是必不可少的,对于高亲和力CA2 +流入系统的激活是必不可少的。我们在阳离子稳态维持中搜索了Kch蛋白的作用,并测试了KCH1和/或KCH2缺失对各种生理参数的影响。与野生型相比,KCH1 KCH2突变细胞较小,相对升高的,在k +条件下更好地增长,并且在一价阳离子存在下表现出改变的生长。没有Kch1和Kch2没有改变在低钾或细胞耐受性的细胞中的细胞内pH值,以二价阳离子,高浓度的山梨糖醇或极端外部pH值。 KCH1的过表达仅在培养基中升高的K +存在下增加细胞内pH。在缺乏Kch基因和主k +摄取系统Trk1和Trk2的菌株中,观察到与野生型缺失Kch1和Kch2相关的表型缺任何表型。 KCH同源物在阳离子稳态中的作用也在Candida albicans细胞中进行测试。我们的数据表明,KCH蛋白显着促进了在酿酒酵母中的最佳阳离子稳态和膜电位的维持。

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