Tejada Maria A, Hashem Nadia, Calloe Kirstine, Klaerke Dan A
Department of Physiology, IKVH, Faculty of Health and Medical Sciences, University of Copenhagen, Dyrlaegevej, Frederiksberg C, Denmark.
PLoS One. 2017 Feb 21;12(2):e0169914. doi: 10.1371/journal.pone.0169914. eCollection 2017.
Slick and Slack high-conductance K+ channels are found in the CNS, kidneys, pancreas, among other organs, where they play an important role in cell excitability as well as in ion transport processes. They are both activated by Na+ and Cl- but show a differential regulation by cell volume changes. Slick has been shown to be regulated by cell volume changes, whereas Slack is insensitive. α-subunits of these channels form homomeric as well as heteromeric channels. It is the aim of this work to explore whether the subunit composition of the Slick/Slack heteromeric channel affects the response to osmotic challenges. In order to provide with the adequate water permeability to the cell membrane of Xenopus laevis oocytes, mRNA of aquaporin 1 was co-expressed with homomeric or heteromeric Slick and Slack α-subunits. Oocytes were superfused with hypotonic or hypertonic buffers and changes in currents were measured by two-electrode voltage clamp. This work presents the first heteromeric K+ channel with a characteristic graded sensitivity to small and fast changes in cell volume. Our results show that the cell volume sensitivity of Slick/Slack heteromeric channels is dependent on the number of volume sensitive Slick α-subunits in the tetrameric channels, giving rise to graded cell volume sensitivity. Regulation of the subunit composition of a channel may constitute a novel mechanism to determine volume sensitivity of cells.
顺滑(Slick)和松弛(Slack)高电导钾通道存在于中枢神经系统、肾脏、胰腺以及其他器官中,它们在细胞兴奋性和离子转运过程中发挥着重要作用。它们都由钠离子和氯离子激活,但在细胞体积变化时表现出不同的调节方式。已证明顺滑通道受细胞体积变化的调节,而松弛通道则不敏感。这些通道的α亚基可形成同聚体通道以及异聚体通道。这项工作的目的是探究顺滑/松弛异聚体通道的亚基组成是否会影响对渗透压挑战的反应。为了使非洲爪蟾卵母细胞的细胞膜具有足够的水通透性,水通道蛋白1的信使核糖核酸与同聚体或异聚体的顺滑和松弛α亚基共表达。卵母细胞用低渗或高渗缓冲液进行灌流,通过双电极电压钳测量电流变化。这项工作展示了首个对细胞体积的微小快速变化具有特征性分级敏感性的异聚体钾通道。我们的结果表明,顺滑/松弛异聚体通道的细胞体积敏感性取决于四聚体通道中对体积敏感的顺滑α亚基的数量,从而产生分级的细胞体积敏感性。通道亚基组成的调节可能构成一种决定细胞体积敏感性的新机制。