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记录非洲爪蟾卵母细胞中的间隙连接电流。

Recording Gap Junction Current from Xenopus Oocytes.

作者信息

Shui Yuan, Wang Zhao-Wen

机构信息

Department of Neuroscience, University of Connecticut School of Medicine.

Department of Neuroscience, University of Connecticut School of Medicine;

出版信息

J Vis Exp. 2022 Jan 21(179). doi: 10.3791/63361.

Abstract

Heterologous expression of connexins and innexins in Xenopus oocytes is a powerful approach for studying the biophysical properties of gap junctions (GJs). However, this approach is technically challenging because it requires a differential voltage clamp of two opposed oocytes sharing a common ground. Although a small number of labs have succeeded in performing this technique, essentially all of them have used either homemade amplifiers or commercial amplifiers that were designed for single-oocyte recordings. It is often challenging for other labs to implement this technique. Although a high side current measuring mode has been incorporated into a commercial amplifier for dual oocyte voltage-clamp recordings, there had been no report for its application until our recent study. We have made the high side current measuring approach more practical and convenient by introducing several technical modifications, including the construction of a magnetically based recording platform that allows precise placement of oocytes and various electrodes, use of the bath solution as a conductor in voltage differential electrodes, adoption of a commercial low-leakage KCl electrode as the reference electrode, fabrication of current and voltage electrodes from thin-wall glass capillaries, and positioning of all the electrodes using magnetically based devices. The method described here allows convenient and robust recordings of junctional current (Ij) between two opposed Xenopus oocytes.

摘要

在非洲爪蟾卵母细胞中异源表达连接蛋白和连接子是研究间隙连接(GJ)生物物理特性的一种有效方法。然而,这种方法在技术上具有挑战性,因为它需要对共享公共接地的两个相对的卵母细胞进行差分电压钳制。尽管少数实验室已成功实施该技术,但基本上所有实验室都使用了自制放大器或专为单卵母细胞记录设计的商用放大器。其他实验室实施该技术往往具有挑战性。尽管商用放大器已纳入高侧电流测量模式用于双卵母细胞电压钳记录,但直到我们最近的研究才有其应用报告。我们通过引入多项技术改进,使高侧电流测量方法更实用、更便捷,包括构建基于磁性的记录平台,该平台可精确放置卵母细胞和各种电极;在差分电压电极中使用浴液作为导体;采用商用低泄漏氯化钾电极作为参比电极;用薄壁玻璃毛细管制作电流和电压电极;以及使用基于磁性的设备定位所有电极。本文所述方法可方便、稳定地记录两个相对的非洲爪蟾卵母细胞之间的连接电流(Ij)。

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