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

机译:在293T细胞中的Trek-1C电流延伸中的细胞内运输的参与

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摘要

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.
机译:Trek-1通道,Twk-1相关钾(K +)通道是2-孔域K +(K2P)通道的一系列,通过该系列或泄漏k +电流发生。 Trek-1通道的一个有趣功能是电流的延伸:即通过Trek-1通道的电流在整个单元配置的形成几分钟内自发地增加。为了探讨细胞内转运是否参与延伸,我们建立了稳定表达Trek-1C通道(K2P2.1)的293T细胞系,并检查了膜蛋白转运,N-甲基马来酰亚胺(NEM),Brefeldin-的抑制剂的影响A,和内吞作用抑制剂,Pitstop2在延伸上。结果表明nem和brefeldin-a抑制和pitstop2的促进了促进提出的细胞内蛋白质转运的参与。相应地,在稳定表达MCHerry-Trek-1融合蛋白的细胞中,NEM降低和Pitstop2增加了融合蛋白的细胞表面定位。此外,通过对应于具有微管相关蛋白2的相互作用位点(MTAP2)对应于与微管相关蛋白2(MTAP2)对应的肽的细胞内施加抑制的延伸。该肽还抑制了用抗MTAP2与抗MCHERRY抗体的共免疫沉淀。 Ezrin抑制剂(NSC668394)的细胞外施用还抑制了融合蛋白的延伸和表面定位。这些抑制剂的共同施加废除了Trek-1C电流,表明Ezrin和MTAP2的添加剂效应增强了Trek-1C通道的表面表达和延伸。这些发现清楚地表明细胞内运输在Trek-1c目前的延伸和其机制中的参与。

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