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细胞内运输参与293T细胞中TREK-1c电流的上升过程。

Involvement of intracellular transport in TREK-1c current run-up in 293T cells.

作者信息

Andharia Naaz, Joseph Ancy, Hayashi Mikio, Okada Masayoshi, Matsuda Hiroko

机构信息

a Department of Physiology , Kansai Medical University , Hirakata , Osaka , Japan.

b Department of Medical Life Science, College of Life Science , Kurashiki University of Science and the Arts , Kurashiki , Okayama , Japan.

出版信息

Channels (Austin). 2017 May 4;11(3):224-235. doi: 10.1080/19336950.2017.1279368. Epub 2017 Jan 13.

Abstract

The TREK-1 channel, the TWIK-1-related potassium (K) channel, is a member of a family of 2-pore-domain K (K2P) channels, through which background or leak K currents occur. An interesting feature of the TREK-1 channel is the run-up of current: i.e. the current through TREK-1 channels spontaneously increases within several minutes of the formation of the whole-cell configuration. To investigate whether intracellular transport is involved in the run-up, we established 293T cell lines stably expressing the TREK-1c channel (K2P2.1) and examined the effects of inhibitors of membrane protein transport, N-methylmaleimide (NEM), brefeldin-A, and an endocytosis inhibitor, pitstop2, on the run-up. The results showing that NEM and brefeldin-A inhibited and pitstop2 facilitated the run-up suggest the involvement of intracellular protein transport. Correspondingly, in cells stably expressing the mCherry-TREK-1 fusion protein, NEM decreased and pitstop2 increased the cell surface localization of the fusion protein. Furthermore, the run-up was inhibited by the intracellular application of a peptide of the C-terminal fragment TREK335-360, corresponding to the interaction site with microtubule-associated protein 2 (Mtap2). This peptide also inhibited the co-immunoprecipitation of Mtap2 with anti-mCherry antibody. The extracellular application of an ezrin inhibitor (NSC668394) also suppressed the run-up and surface localization of the fusion protein. The co-application of these inhibitors abolished the TREK-1c current, suggesting that the additive effects of ezrin and Mtap2 enhance the surface expression of TREK-1c channels and the run-up. These findings clearly showed the involvement of intracellular transport in TREK-1c current run-up and its mechanism.

摘要

TREK-1通道,即与TWIK-1相关的钾(K)通道,是双孔结构域K(K2P)通道家族的成员,通过该通道会产生背景钾电流或泄漏钾电流。TREK-1通道的一个有趣特征是电流上升:即通过TREK-1通道的电流在全细胞模式形成后的几分钟内会自发增加。为了研究细胞内运输是否参与电流上升过程,我们建立了稳定表达TREK-1c通道(K2P2.1)的293T细胞系,并研究了膜蛋白运输抑制剂N-甲基马来酰亚胺(NEM)、布雷菲德菌素A以及内吞作用抑制剂pitstop2对电流上升的影响。NEM和布雷菲德菌素A抑制电流上升而pitstop2促进电流上升,这些结果表明细胞内蛋白运输参与其中。相应地,在稳定表达mCherry-TREK-1融合蛋白的细胞中,NEM降低了融合蛋白的细胞表面定位,而pitstop2增加了融合蛋白的细胞表面定位。此外,通过细胞内应用对应于与微管相关蛋白2(Mtap2)相互作用位点的C末端片段TREK335 - 360的肽,电流上升受到抑制。该肽还抑制了Mtap2与抗mCherry抗体的共免疫沉淀。细胞外应用埃兹蛋白抑制剂(NSC668394)也抑制了融合蛋白的电流上升和表面定位。这些抑制剂共同应用可消除TREK-1c电流,表明埃兹蛋白和Mtap2的累加效应增强了TREK-1c通道的表面表达和电流上升。这些发现清楚地表明细胞内运输参与了TREK-1c电流上升及其机制。

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