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酵母中的单价阳离子通量

Univalent cation fluxes in yeast.

作者信息

Lapathitis G, Kotyk A

机构信息

Institute of Physiology, Prague, Czech Republic.

出版信息

Biochem Mol Biol Int. 1998 Feb;44(2):371-80. doi: 10.1080/15216549800201382.

Abstract

Transport of H+, K+, Rb+ and Tl+ ions was studied in a wild-type strain of Saccharomyces cerevisiae and in its mutants defective in the high-affinity K+ transport system TRK1 and in the double mutant with an additional deletion in the TRK2 gene. In the absence of glucose K+, Rb+ and Tl+ elicited a more or less stoichiometric exchange outflow of H+, in the mutants K+ moved out of cells even in the presence of 10 mM KCl or KNO3. In the presence of glucose in the wild type, K+, Rb+ and Tl+ brought about a massive outflow of H+ while being transported inward against high concentration gradients. In the trk1 delta mutant the exchange fluxes were reduced by 65-85%, in the double mutant those of K+, Rb+ and Tl+ practically cease but outflow of H+ caused by Tl+ remained at the level of the trk1 delta mutant. It appears that, in addition to the H+ export by the PMA1-coded plasma membrane H(+)-ATPase, at least three different univalent-cation involving activities are present: the high-affinity transport system for K+ (TRK1), another system (possibly TRK2) with different responses to K+ and Rb+, vs. Tl+, and an active system for K+ export. The first two are apparently active exchange systems for K+, Rb+, and Tl+ against H+. The source of energy for these highly active transports (acting against gradients of 1000:1 and 5000:1, respectively) is unclear.

摘要

在酿酒酵母野生型菌株及其高亲和力钾离子转运系统TRK1缺陷型突变体以及TRK2基因额外缺失的双突变体中,研究了氢离子、钾离子、铷离子和铊离子的转运。在无葡萄糖的情况下,钾离子、铷离子和铊离子或多或少会引发氢离子的化学计量交换流出,在这些突变体中,即使存在10 mM氯化钾或硝酸钾,钾离子也会从细胞中移出。在野生型中存在葡萄糖的情况下,钾离子、铷离子和铊离子在逆高浓度梯度向内转运时会引发大量氢离子流出。在trk1δ突变体中,交换通量降低了65 - 85%,在双突变体中,钾离子、铷离子和铊离子的交换通量几乎停止,但铊离子引起的氢离子流出仍保持在trk1δ突变体的水平。似乎除了由PMA1编码的质膜H(+)-ATP酶输出氢离子外,至少还存在三种不同的涉及单价阳离子的活性:钾离子的高亲和力转运系统(TRK1)、对钾离子和铷离子与铊离子有不同反应的另一个系统(可能是TRK2)以及钾离子输出的活性系统。前两者显然是钾离子、铷离子和铊离子与氢离子的活性交换系统。这些高活性转运(分别逆1000:1和5000:1的梯度起作用)的能量来源尚不清楚。

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