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Arl1 GTP 酶与细胞内 Na(+) /H(+) 反向转运蛋白在酸碱稳态和阳离子解毒中的遗传相互作用。

Genetic interactions among the Arl1 GTPase and intracellular Na(+) /H(+) antiporters in pH homeostasis and cation detoxification.

机构信息

Department of Membrane Transport, Institute of Physiology Academy of Sciences of the Czech Republic v.v.i., Prague, Czech Republic.

出版信息

FEMS Yeast Res. 2010 Nov;10(7):802-11. doi: 10.1111/j.1567-1364.2010.00661.x. Epub 2010 Jul 26.

Abstract

The roles of intracellular GTPase Arl1 and organellar cation/H(+) antiporters (Kha1 and Nhx1) in Saccharomyces cerevisiae tolerance to various stress factors were investigated and interesting new phenotypes of strains devoid of these proteins were found. The role of Arl1 GTPase in their tolerance to various cations is not caused by an altered plasma-membrane potential. Besides the known sensitivity of arl1 mutants to high temperature, we discovered their sensitivity to low temperature. We found for the first time that in the absence of Arl1p, Kha1p increases potassium, sodium and lithium tolerance, and can thus be categorized as an antiporter with broad substrate specificity. Kha1p also participates in the detoxification of undesired chemical compounds, pH regulation and growth at nonoptimal temperatures. Cells with the combined deletions of all three genes have considerable difficulty growing under nonoptimal conditions. We conclude that Arl1p, Kha1p and Nhx1p collaborate in survival strategies at nonoptimal pH, temperatures and cation concentrations, but work independent of each other.

摘要

研究了细胞内 GTPase Arl1 和细胞器阳离子/H(+)反向转运蛋白(Kha1 和 Nhx1)在酿酒酵母耐受各种应激因子中的作用,发现了这些蛋白质缺失菌株的有趣新表型。Arl1 GTPase 在其耐受各种阳离子中的作用不是由质膜电位改变引起的。除了已知的 arl1 突变体对高温敏感外,我们还发现它们对低温敏感。我们首次发现,在缺乏 Arl1p 的情况下,Kha1p 增加了钾、钠和锂的耐受性,因此可以归类为具有广泛底物特异性的反向转运蛋白。Kha1p 还参与了对不需要的化学化合物、pH 值调节和非最佳温度下生长的解毒。所有三个基因缺失的细胞在非最佳条件下生长有相当大的困难。我们得出结论,Arl1p、Kha1p 和 Nhx1p 在非最佳 pH 值、温度和阳离子浓度下的生存策略中协同作用,但彼此独立工作。

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