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组胺H1受体刺激诱导HeLa细胞中的Ca2+振荡:Fura-2和膜片钳分析。

Ca2+ oscillations induced by histamine H1 receptor stimulation in HeLa cells: Fura-2 and patch clamp analysis.

作者信息

Sauvé R, Diarra A, Chahine M, Simoneau C, Morier N, Roy G

机构信息

Départment de Physiologie, Faculté de Médecine, Université de Montréal, Québec, Canada.

出版信息

Cell Calcium. 1991 Feb-Mar;12(2-3):165-76. doi: 10.1016/0143-4160(91)90018-a.

Abstract

The response of HeLa cells to histamine H1 receptor stimulation is characterized by periodic increases in cytosolic free Ca2+ concentration. The mechanisms underlying this oscillatory behaviour are not well understood. Fura-2 and patch clamp experiments carried out on HeLa cells have previously shown: (a) that Ca2+ oscillations are not initially dependent on the presence of external Ca2+, that external Ca2+ is required to maintain the oscillatory activity; (b) that a depolarization of the cell membrane leads to an inhibition of Ca2+ oscillations during the external Ca2+ dependent phase of the process; and (c) that Ca2+ oscillations can be abolished during this latter phase by the exogenous addition of Ca2+ channel blocking agents, such as Co2+ or La3+. The contribution of the inositol phosphate pathway to Ca2+ oscillations was more recently investigated in whole cell experiments performed with patch pipettes containing IP3 or the non-hydrolysable GTP analogue GTP-gamma S. Clear periodic current fluctuations were recorded using both patch pipette solutions. Assuming that the intracellular IP3 level remained constant under these conditions, these findings provide direct evidence that the Ca2+ oscillations in HeLa cells do not arise from a periodic production of IP3. The effect of the internal and external cell pH on the oscillatory process was also investigated in Fura-2 and patch clamp experiments. It was found that an increase in intracellular pH from 7.4 to 7.7 during the external Ca2+ dependent phase of the histamine stimulation abolishes the appearance of Ca2+ spikes whereas, a cellular acidification to pH 7.2 maintains or stimulates the Ca2+ oscillatory activity. The former effect was observed in the absence of Ca2+ in the bathing medium, indicating that the inhibitory action of alkaline pH was not related to a reduced Ca2+ entry. An increase in extracellular pH from 7.3 to 9.0 in contrast elicited an intracellular Ca2+ accumulation which resulted in most cases in an inhibition of the oscillatory process. This effect was dependent on external Ca2+ and was observed in alkaline internal pH conditions (pH 7.7). These observations suggest: (a) that the net Ca2+ influx in HeLa cells is strongly dependent on the cell internal and external pH; and (b) that the magnitude of this Ca2+ influx controls to a large extent the oscillation frequency. Finally, an inhibition of the histamine induced Ca2+ oscillatory activity was observed following the addition of the Ca(2+)-induced Ca(2+)-release (CICR) inhibitor adenine to the external medium.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

HeLa细胞对组胺H1受体刺激的反应表现为胞质游离Ca2+浓度的周期性增加。这种振荡行为背后的机制尚未完全了解。先前在HeLa细胞上进行的Fura-2和膜片钳实验表明:(a)Ca2+振荡最初不依赖于细胞外Ca2+的存在,但需要细胞外Ca2+来维持振荡活动;(b)细胞膜去极化会在该过程的细胞外Ca2+依赖阶段抑制Ca2+振荡;(c)在此后期阶段,通过外源添加Ca2+通道阻滞剂(如Co2+或La3+)可消除Ca2+振荡。最近,在使用含有IP3或不可水解的GTP类似物GTP-γS的膜片吸管进行的全细胞实验中,研究了肌醇磷酸途径对Ca2+振荡的贡献。使用两种膜片吸管溶液均记录到明显的周期性电流波动。假设在这些条件下细胞内IP3水平保持恒定,这些发现提供了直接证据,表明HeLa细胞中的Ca2+振荡并非源于IP3的周期性产生。还在Fura-2和膜片钳实验中研究了细胞内和细胞外pH对振荡过程的影响。发现在组胺刺激的细胞外Ca2+依赖阶段,细胞内pH从7.4增加到7.7会消除Ca2+尖峰的出现,而细胞酸化至pH 7.2则会维持或刺激Ca2+振荡活动。在浴液中不存在Ca2+的情况下观察到了前者的效应,表明碱性pH的抑制作用与Ca2+内流减少无关。相反,细胞外pH从7.3增加到9.0会引起细胞内Ca2+积累,在大多数情况下导致振荡过程受到抑制。这种效应依赖于细胞外Ca2+,并且在碱性细胞内pH条件(pH 7.7)下观察到。这些观察结果表明:(a)HeLa细胞中的净Ca2+内流强烈依赖于细胞内和细胞外pH;(b)这种Ca2+内流的大小在很大程度上控制着振荡频率。最后,向外部介质中添加Ca(2+)-诱导的Ca(2+)-释放(CICR)抑制剂腺嘌呤后,观察到组胺诱导的Ca2+振荡活动受到抑制。(摘要截断于250字)

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