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pH对艾氏腹水癌细胞中容积敏感性钾电流的调节作用

Modulation of the volume-sensitive K+ current in Ehrlich ascites tumour cells by pH.

作者信息

Hougaard C, Jørgensen F, Hoffmann E K

机构信息

August Krogh Institute, Biochemical Department, Copenhagen , Denmark.

出版信息

Pflugers Arch. 2001 Jul;442(4):622-33. doi: 10.1007/s004240100585.

DOI:10.1007/s004240100585
PMID:11510896
Abstract

The effects of extracellular and intracellular pH (pHo and pHi respectively) on the regulatory volume decrease (RVD) response and on the volume-sensitive K+ and Cl- currents (IK,vol and ICl,vol respectively) were studied in Ehrlich ascites tumour cells. Alkaline pHo accelerated and acidic pHo decelerated the RVD response significantly. Intra- and extracellular alkalinisation increased the amplitude of IK,vol whereas acidification had an inhibitory effect. The magnitude of ICl,vol was not affected by changes in pHi or pHo. A significant reduction in the activation time for IK,vol after hypotonic cell swelling was observed upon moderate intracellular alkalinisation (to pHi 7.9). A further increase in pHi to 8.4 resulted in the spontaneous activation of an IK under isotonic conditions which resembled IK,vol with respect to its pharmacological profile and current/voltage (I/V) relation. Noise analysis demonstrated that the increased amplitude of IK,vol at alkaline pH resulted mainly from an increase in the number of channels (N) contributing to the current. The channel open probability, Po, was largely unaffected by pH. The pH dependence and the biophysical and pharmacological properties of IK,vol are similar to those of the cloned tandem pore-domain acid-sensitive K+ (TASK) channels, and in the current study the presence of TASK-1 was confirmed in Ehrlich cells.

摘要

在艾氏腹水肿瘤细胞中研究了细胞外和细胞内pH值(分别为pHo和pHi)对调节性容积减小(RVD)反应以及对容积敏感性钾离子和氯离子电流(分别为IK,vol和ICl,vol)的影响。碱性pHo显著加速RVD反应,而酸性pHo则显著使其减速。细胞内和细胞外碱化均增加IK,vol的幅度,而酸化则具有抑制作用。ICl,vol的大小不受pHi或pHo变化的影响。在适度细胞内碱化(至pHi 7.9)后,观察到低渗细胞肿胀后IK,vol的激活时间显著缩短。将pHi进一步升高至8.4导致在等渗条件下IK自发激活,其药理学特征和电流/电压(I/V)关系与IK,vol相似。噪声分析表明,碱性pH下IK,vol幅度增加主要源于对电流有贡献的通道数量(N)增加。通道开放概率Po在很大程度上不受pH影响。IK,vol的pH依赖性以及生物物理和药理学特性与克隆的串联孔结构域酸敏感钾离子(TASK)通道相似,并且在本研究中证实艾氏细胞中存在TASK-1。

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