Department of Membrane Transport, Institute of Physiology Academy of Sciences of the Czech Republic v.v.i., Prague, Czech Republic.
FEMS Yeast Res. 2012 May;12(3):332-40. doi: 10.1111/j.1567-1364.2011.00780.x. Epub 2012 Jan 10.
The GTPases Arl1 and Ypt6 are involved in the intracellular transport of vesicles and their fusion with the trans-Golgi network. This work is focused on comparing the roles of these GTPases in the tolerance of Saccharomyces cerevisiae cells to an increased concentration of alkali metal cations and other stress factors. We studied the phenotypes of arl1 or ypt6 deletions in combination with the deletions of genes encoding alkali-metal-cation transporters (ena1-4, nha1, nhx1, and kha1). Salt sensitivity of the arl1 and ypt6 mutants was shown to be independent of the tested cation transporters and electrochemical membrane potential. Phenotype manifestations of ypt6 deletion were usually more prominent than those of arl1 (cells were more sensitive to KCl, NaCl, LiCl, hygromycin B, increased temperature, and increased pH). At suboptimal temperature, the growth inhibition of arl1 and ypt6 mutants was approximately the same, and low pH was the only condition where arl1 mutants grew even worse than ypt6 mutants. Overexpression of the ARL1 gene suppressed the phenotypes of ypt6 deletion; however, this did not work vice versa (additional copies of YPT6 could not replace ARL1). Our results suggest partially overlapping functions of the GTPases in resistance to various stress factors, with Ypt6 being more efficient under physiological conditions and Arl1 more versatile when overexpressed.
GTPases Arl1 和 Ypt6 参与囊泡的细胞内运输及其与反式高尔基体网络的融合。这项工作主要集中在比较这些 GTPases 在酵母细胞对增加的碱金属阳离子浓度和其他应激因素的耐受性方面的作用。我们研究了 arl1 或 ypt6 缺失与编码碱金属阳离子转运蛋白(ena1-4、nha1、nhx1 和 kha1)缺失的组合的表型。证明 arl1 和 ypt6 突变体的盐敏感性与测试的阳离子转运体和电化学膜电位无关。ypt6 缺失表型的表现通常比 arl1 更为明显(细胞对 KCl、NaCl、LiCl、潮霉素 B、升高的温度和升高的 pH 更敏感)。在亚最佳温度下,arl1 和 ypt6 突变体的生长抑制几乎相同,只有低 pH 是 arl1 突变体比 ypt6 突变体生长更差的唯一条件。ARL1 基因的过表达抑制了 ypt6 缺失的表型;然而,反之则不行(YPT6 的额外拷贝不能替代 ARL1)。我们的结果表明,GTPases 在抵抗各种应激因素方面具有部分重叠的功能,Ypt6 在生理条件下更为有效,而 Arl1 在过表达时更为多样。