Department of Aerospace Physiology, Fourth Military Medical University, 17#, Changle West Road, Xi'an, 710032, China.
Mol Cell Biochem. 2009 Nov;331(1-2):117-26. doi: 10.1007/s11010-009-0149-7. Epub 2009 May 10.
Large-conductance Ca(2+)-activated K(+) channel is formed by a tetramer of the pore-forming alpha-subunit and distinct accessory beta-subunits (beta1-beta4) which contribute to BK(Ca) channel molecular diversity. Accumulative evidences indicate that not only alpha-subunit alone but also the alpha + beta subunit complex and/or beta-subunit might play an important role in modulating various physiological functions in most mammalian cells. To evaluate the detailed pharmacological and biophysical properties of alpha + beta1 subunit complex or beta1-subunit in BK(Ca) channel, we established an expression system that reliably coexpress hSloalpha + beta1 subunit complex in HEK293 cells. The coexpression of hSloalpha + beta1 subunit complex was evaluated by western blotting and immunolocalization, and then the single-channel kinetics and pharmacological properties of expressed hSloalpha + beta1 subunit complex were investigated by cell-attached and outside-out patches, respectively. The results in this study showed that the expressed hSloalpha + beta1 subunit complex demonstrated to be fully functional for its typical single-channel traces, Ca(2+)-sensitivity, voltage-dependency, high conductance (151 +/- 7 pS), and its pharmacological activation and inhibition.
大电导钙激活钾通道由四聚体的孔形成α亚基和不同的辅助β亚基(β1-β4)组成,这有助于 BK(Ca)通道的分子多样性。越来越多的证据表明,不仅α亚基本身,而且α+β亚基复合物和/或β亚基可能在调节大多数哺乳动物细胞的各种生理功能中发挥重要作用。为了评估α+β1 亚基复合物或β1 亚基在 BK(Ca)通道中的详细药理学和生物物理特性,我们建立了一个可靠地在 HEK293 细胞中共同表达 hSloα+β1 亚基复合物的表达系统。通过 Western blot 和免疫定位评估 hSloα+β1 亚基复合物的共表达,然后通过细胞贴附和外面外斑片分别研究表达的 hSloα+β1 亚基复合物的单通道动力学和药理学特性。本研究的结果表明,表达的 hSloα+β1 亚基复合物表现出典型的单通道痕迹、Ca(2+)敏感性、电压依赖性、高电导(151±7 pS)以及其药理学激活和抑制作用,完全具有功能性。