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细胞外表位标记的Ca(V)2.1电压门控钙通道的功能特性及调节

Functional properties and modulation of extracellular epitope-tagged Ca(V)2.1 voltage-gated calcium channels.

作者信息

Watschinger Katrin, Horak Silja B, Schulze Katrin, Obermair Gerald J, Wild Claudia, Koschak Alexandra, Sinnegger-Brauns Martina J, Tampé Robert, Striessnig Jörg

机构信息

Pharmacology and Toxicology Unit, Institute of Pharmacy and Centre for Molecular Biosciences Innsbruck, University of Innsbruck, Innsbruck, Austria.

出版信息

Channels (Austin). 2008 Nov-Dec;2(6):461-73. doi: 10.4161/chan.2.6.6793. Epub 2008 Nov 15.

Abstract

Depolarisation-induced Ca2+ influx into electrically excitable cells is determined by the density of voltage-gated Ca2+ channels at the cell surface. Surface expression is modulated by physiological stimuli as well as by drugs and can be altered under pathological conditions. Extracellular epitope-tagging of channel subunits allows to quantify their surface expression and to distinguish surface channels from those in intracellular compartments. Here we report the first systematic characterisation of extracellularly epitope-tagged Ca(V)2.1 channels. We identified a permissive region in the pore-loop of repeat IV within the Ca(V)2.1 alpha(1) subunit, which allowed integration of several different tags (hemagluttinine [HA], double HA; 6-histidine tag [His], 9-His, bungarotoxin-binding site) without compromising alpha(1) subunit protein expression (in transfected tsA-201 cells) and function (after expression in X. laevis oocytes). Immunofluorescence studies revealed that the double-HA tagged construct (1722-HAGHA) was targeted to presynaptic sites in transfected cultured hippocampal neurons as expected for Ca(V)2.1 channels. We also demonstrate that introduction of tags into this permissive position creates artificial sites for channel modulation. This was demonstrated by partial inhibition of 1722-HA channel currents with anti-HA antibodies and the concentration-dependent stimulation or partial inhibition by Ni-nitrilo triacetic acid (NTA) and novel bulkier derivatives (Ni-trisNTA, Ni-tetrakisNTA, Ni-nitro-o-phenyl-bisNTA, Ni-nitro-p-phenyl-bisNTA). Therefore our data also provide evidence for the concept that artificial modulatory sites for small ligands can be introduced into voltage-gated Ca2+ channel for their selective modulation.

摘要

去极化诱导的Ca2+流入电可兴奋细胞取决于细胞表面电压门控Ca2+通道的密度。表面表达受生理刺激以及药物调节,并且在病理条件下可能会改变。通道亚基的细胞外表位标记能够定量其表面表达,并区分表面通道与细胞内区室中的通道。在此,我们报告了细胞外表位标记的Ca(V)2.1通道的首次系统表征。我们在Ca(V)2.1 α(1)亚基的重复IV孔环中确定了一个允许区域,该区域允许整合几种不同的标签(血凝素[HA]、双HA;6-组氨酸标签[His]、9-His、银环蛇毒素结合位点),而不会损害α(1)亚基蛋白表达(在转染的tsA-201细胞中)和功能(在非洲爪蟾卵母细胞中表达后)。免疫荧光研究表明,双HA标记的构建体(1722-HAGHA)如预期的Ca(V)2.1通道一样靶向转染的培养海马神经元中的突触前位点。我们还证明,将标签引入这个允许位置会产生通道调节的人工位点。这通过用抗HA抗体部分抑制1722-HA通道电流以及镍-次氮基三乙酸(NTA)和新型更大的衍生物(镍-三NTA、镍-四NTA、镍-硝基邻苯基双NTA、镍-硝基对苯基双NTA)的浓度依赖性刺激或部分抑制得到证明。因此,我们的数据也为可以将小配体的人工调节位点引入电压门控Ca2+通道以进行选择性调节这一概念提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3242/3942855/cefeb55939a0/emss-33505-f0001.jpg

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