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hERG 离子通道药理学:多孔支撑脂质双层中的细胞膜脂质体与全细胞膜片钳比较。

hERG ion channel pharmacology: cell membrane liposomes in porous-supported lipid bilayers compared with whole-cell patch-clamping.

机构信息

AgResearch, Grasslands Research Centre, Private Bag 11008, Palmerston North 4442, New Zealand.

出版信息

Eur Biophys J. 2012 Nov;41(11):949-58. doi: 10.1007/s00249-012-0852-2. Epub 2012 Aug 31.

Abstract

The purpose of this study was to obtain functional hERG ion channel protein for use in a non-cell-based ion channel assay. hERG was expressed in Sf9 insect cells. Attempts to solubilise the hERG protein from Sf9 insect cell membranes using non-ionic detergents (NP40 and DDM) were not successful. We therefore generated liposomes from the unpurified membrane fraction and incorporated these into porous Teflon-supported bilayer lipid membranes. Macroscopic potassium currents (1 nA) were recorded that approximated those in whole-cell patch-clamping, but the channels were bidirectional in the bilayer lipid membrane (BLM). Currents were partially inhibited by the hERG blockers E4031, verapamil, and clofilium, indicating that the protein of interest is present at high levels in the BLM relative to endogenous channels. Cell liposomes produced from Sf9 insect cell membranes expressing voltage-gated sodium channels also gave current responses that were activated by veratridine and inhibited by saxitoxin. These results demonstrate that purification of the ion channel of interest is not always necessary for liposomes used in macro-current BLM systems.

摘要

本研究旨在获得功能性 hERG 离子通道蛋白,用于非细胞基础的离子通道测定。hERG 在 Sf9 昆虫细胞中表达。使用非离子型清洁剂(NP40 和 DDM)从 Sf9 昆虫细胞膜中溶解 hERG 蛋白的尝试均未成功。因此,我们从未纯化的膜部分生成脂质体,并将其纳入多孔聚四氟乙烯支持的双层脂质膜中。记录到近似于全细胞片箝记录的宏观钾电流(1 nA),但在双层脂质膜(BLM)中通道是双向的。电流被 hERG 阻断剂 E4031、维拉帕米和氯菲啶部分抑制,表明感兴趣的蛋白质在 BLM 中的水平相对于内源性通道较高。从表达电压门控钠离子通道的 Sf9 昆虫细胞膜产生的细胞脂质体也产生了电流反应,该反应被藜芦碱激活,并被石房蛤毒素抑制。这些结果表明,对于用于宏观电流 BLM 系统的脂质体,并不总是需要对感兴趣的离子通道进行纯化。

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