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来自HeLa细胞的内向整流钾离子通道的分子特征分析。

Molecular characterization of an inwardly rectifying K+ channel from HeLa cells.

作者信息

Klein H, Garneau L, Coady M, Lemay G, Lapointe J Y, Sauvé R

机构信息

Département de physiologie, Groupe de recherche en transport membranaire, Faculté de médecine, Université de Montréal, C.P. 6128, Succursale Centre-ville, Montréal, Québec, Canada H3C 3J7.

出版信息

J Membr Biol. 1999 Jan 1;167(1):43-52. doi: 10.1007/s002329900470.

Abstract

Previous patch-clamp studies have shown that the potassium permeability of the plasma membrane in HeLa cells, a cell line derived from an epidermoid carcinoma of the cervix, is controlled by various K+-selective pores including an IRK1 type inwardly rectifying K+ channel. We used the sequence previously reported for the human heart Kir2.1 channel to design a RT-PCR strategy for cloning the IRK1 channel in HeLa cells. A full-length clone of 1.3 kb was obtained that was identical to the human cardiac Kir2.1 inward rectifier. The nature of the cloned channel was also confirmed in a Northern blot analysis where a signal of 5.3 kb corresponding to the molecular weight expected for a Kir2.1 channel transcript was identified not only in HeLa cells, but also in WI-38, ECV304 and bovine aortic endothelial cells. The HeLa IRK1 channel cDNA was subcloned in an expression vector (pMT21) and injected into Xenopus oocytes. Cell-attached and inside-out single channel recordings obtained from injected oocytes provided evidence for a voltage-independent K+-selective channel with current/voltage characteristics typical of a strong inward rectifier. The single channel conductance for inward currents measured in 200 mm K2SO4 conditions was estimated at 40 +/- 1 pS (n = 3), for applied voltages ranging from -100 to -160 mV, in agreement with the unitary conductance for the IRK1 channel identified in HeLa cells. In addition, the single channel conductance for inward currents, Gamma, was found to vary as a function of alphaK, the external K+ ion activity, according to Gamma = Gamma0 [alphaK]delta with Gamma0 = 3.3 pS and delta = 0.5. Single channel recordings from injected oocytes also provided evidence of a voltage-dependent block by external Cs+ and Ba2+. The presence of 500 micron Cs+ caused a voltage-dependent flickering, typical of a fast channel blocking process which resulted in a reduction of the channel open probability at increasingly negative membrane potential values. The fractional electrical distance computed for the Cs+ blocking site was greater than 1 indicating a multiple ion channel occupation. In contrast, external Ba2+ at concentrations ranging from 25 to 100 micron caused a slow channel block, consistent with the binding of a single Ba2+ ion at a site located at half the membrane span. It is concluded on the basis of these observations that HeLa cells expressed a Kir2.1 type inwardly rectifying channel likely to be involved in maintaining and regulating the cell resting potential.

摘要

先前的膜片钳研究表明,源自宫颈表皮样癌的HeLa细胞系质膜的钾离子通透性受多种钾离子选择性通道控制,包括IRK1型内向整流钾离子通道。我们利用先前报道的人类心脏Kir2.1通道序列设计了一种RT-PCR策略,用于克隆HeLa细胞中的IRK1通道。获得了一个1.3 kb的全长克隆,它与人类心脏Kir2.1内向整流器相同。在Northern印迹分析中也证实了克隆通道的性质,其中不仅在HeLa细胞中,而且在WI-38、ECV304和牛主动脉内皮细胞中都鉴定出了一个5.3 kb的信号,对应于Kir2.1通道转录本预期的分子量。将HeLa IRK1通道cDNA亚克隆到表达载体(pMT21)中,并注射到非洲爪蟾卵母细胞中。从注射的卵母细胞获得的细胞贴附和内面向外单通道记录为一个电压非依赖性钾离子选择性通道提供了证据,该通道具有典型的强内向整流器的电流/电压特性。在200 mM K2SO4条件下测量的内向电流的单通道电导估计为40 +/- 1 pS(n = 3),施加电压范围为-100至-160 mV,这与在HeLa细胞中鉴定的IRK1通道的单位电导一致。此外,发现内向电流的单通道电导Gamma随外部钾离子活性alphaK而变化,符合Gamma = Gamma0 [alphaK]delta,其中Gamma0 = 3.3 pS,delta = 0.5。从注射的卵母细胞进行的单通道记录还提供了外部Cs+和Ba2+电压依赖性阻断的证据。500 μM Cs+的存在导致电压依赖性闪烁,这是快速通道阻断过程的典型特征,并导致在越来越负的膜电位值下通道开放概率降低。计算得出的Cs+阻断位点的分数电距离大于1,表明存在多个离子通道占据。相比之下,浓度范围为25至100 μM的外部Ba2+导致缓慢的通道阻断,这与单个Ba2+离子在位于膜跨度一半位置的位点结合一致。基于这些观察结果得出结论,HeLa细胞表达了一种Kir2.1型内向整流通道,可能参与维持和调节细胞静息电位。

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