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线粒体膜囊泡中的电中性钾离子/氢离子交换涉及Yol027/Letm1蛋白。

Electroneutral K+/H+ exchange in mitochondrial membrane vesicles involves Yol027/Letm1 proteins.

作者信息

Froschauer Elisabeth, Nowikovsky Karin, Schweyen Rudolf J

机构信息

Max F. Perutz Laboratories, Department of Microbiology and Genetics, University of Vienna, Campus Vienna Biocenter, Dr. Bohrgasse 9, A-1030 Vienna, Austria.

出版信息

Biochim Biophys Acta. 2005 Jun 1;1711(1):41-8. doi: 10.1016/j.bbamem.2005.02.018. Epub 2005 Mar 22.

Abstract

YOL027c in yeast and LETM1 in humans encode integral proteins of the inner mitochondrial membrane. They have been implicated in mitochondrial K+ homeostasis and volume control. To further characterize their role, we made use of submitochondrial particles (SMPs) with entrapped K+- and H+-sensitive fluorescent dyes PBFI and BCECF, respectively, to study the kinetics of K+ and H+ transport across the yeast inner mitochondrial membrane. Wild-type SMPs exhibited rapid, reciprocal translocations of K+ and H+ driven by concentration gradients of either of them. K+ and H+ translocations have stoichiometries similar to those mediated by the exogenous K+/H+ exchanger nigericin, and they are shown to be essentially electroneutral and obligatorily coupled. Moreover, [K+] gradients move H+ against its concentration gradient, and vice-versa. These features, as well as the sensitivity of K+ and H+ fluxes to quinine and Mg2+, qualify these activities as K+/H+ exchange reactions. Both activities are abolished when the yeast Yol027p protein is absent (yol027Delta mutant SMPs), indicating that it has an essential role in this reaction. The replacement of the yeast Yol027p by the human Letm1 protein restores K+/H+ exchange activity confirming functional homology of the yeast and human proteins. Considering their newly identified function, we propose to refer to the yeast YOL027c gene and the human LETM1 gene as yMKH1 and hMKH1, respectively.

摘要

酵母中的YOL027c和人类中的LETM1编码线粒体内膜的整合蛋白。它们与线粒体K⁺稳态和体积控制有关。为了进一步表征它们的作用,我们利用了分别包埋有K⁺和H⁺敏感荧光染料PBFI和BCECF的亚线粒体颗粒(SMPs),来研究K⁺和H⁺跨酵母线粒体内膜运输的动力学。野生型SMPs表现出由它们中任何一种的浓度梯度驱动的K⁺和H⁺的快速、相互易位。K⁺和H⁺的易位化学计量与由外源性K⁺/H⁺交换体尼日利亚菌素介导的相似,并且它们显示为基本上电中性且必然偶联。此外,[K⁺]梯度使H⁺逆其浓度梯度移动,反之亦然。这些特征,以及K⁺和H⁺通量对奎宁和Mg²⁺的敏感性,使这些活性符合K⁺/H⁺交换反应。当酵母Yol027p蛋白缺失时(yol027Delta突变体SMPs),这两种活性都被消除,表明它在该反应中起关键作用。用人Letm1蛋白替代酵母Yol027p可恢复K⁺/H⁺交换活性,证实了酵母和人类蛋白的功能同源性。考虑到它们新确定的功能,我们建议分别将酵母YOL027c基因和人类LETM1基因称为yMKH1和hMKH1。

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