Department of Basic and Applied Medical Sciences-Physiology Group, Ghent University, 9000 Ghent, Belgium.
Department of Physics and Astronomy, Ghent University, 9000 Ghent, Belgium.
Int J Mol Sci. 2020 Oct 5;21(19):7340. doi: 10.3390/ijms21197340.
Cx43 hemichannels (HCs) are electrically and chemically gated transmembrane pores with low open probability and multiple conductance states, which makes kinetic studies of channel gating in large datasets challenging. Here, we developed open access software, named HemiGUI, to analyze HC gating transitions and investigated voltage-induced HC opening based on up to ≈4000 events recorded in HeLa-Cx43-overexpressing cells. We performed a detailed characterization of Cx43 HC gating profiles and specifically focused on the role of the C-terminal tail (CT) domain by recording the impact of adding an EGFP tag to the Cx43 CT end (Cx43-EGFP) or by supplying the Cx43 HC-inhibiting peptide Gap19 that interferes with CT interaction with the cytoplasmic loop (CL). We found that Gap19 not only decreased HC opening activity to the open state (≈217 pS) but also increased the propensity of subconductance (≈80 pS) transitions that additionally became slower as compared to the control. The work demonstrates that large sample transition analysis allows detailed investigations on Cx43 HC gating and shows that Gap19 acts as a HC gating modifier by interacting with the CT that forms a crucial gating element.
缝隙连接蛋白 43 半通道(HCs)是具有低导通概率和多种电导状态的电和化学门控跨膜孔道,这使得在大型数据集上研究通道门控的动力学具有挑战性。在这里,我们开发了一个名为 HemiGUI 的开放访问软件,用于分析 HC 门控跃迁,并基于在过表达 HeLa-Cx43 的细胞中记录的多达约 4000 个事件,研究了电压诱导的 HC 开放。我们对 Cx43 HC 门控谱进行了详细的表征,特别是通过记录在 C 末端尾部(CT)域添加 EGFP 标签(Cx43-EGFP)或提供与细胞质环(CL)相互作用的 Cx43 HC 抑制肽 Gap19 对 Cx43 CT 端的影响(Cx43-EGFP)或提供与细胞质环(CL)相互作用的 Cx43 HC 抑制肽 Gap19 对 Cx43 CT 端的影响(Cx43-EGFP),特别关注 CT 域的作用。我们发现 Gap19 不仅降低了 HC 向开放状态(≈217 pS)的开放活性,而且增加了亚电导(≈80 pS)跃迁的倾向,与对照相比,这些跃迁变得更慢。这项工作表明,大样本跃迁分析允许对 Cx43 HC 门控进行详细研究,并表明 Gap19 通过与形成关键门控元件的 CT 相互作用,充当 HC 门控调节剂。