首页> 美国卫生研究院文献>The Journal of Physiology >Ca2+ influx during agonist and Ins(245)P3-evoked Ca2+ oscillations in HeLa epithelial cells.
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Ca2+ influx during agonist and Ins(245)P3-evoked Ca2+ oscillations in HeLa epithelial cells.

机译:在激动剂和Ins(245)P3引起的HeLa上皮细胞Ca2 +振荡期间Ca2 +大量涌入。

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摘要

1. Histamine-stimulated [Ca2+]i oscillations were studied in > 162 HeLa cells using the techniques of Ca2+ imaging, patch clamp and single-cell indo-1 fluorescence. 2. [Ca2+]i oscillations in HeLa cells were acutely dependent on extracellular Ca2+ and were also blocked by the extracellular addition of Cd2+ (100 microM). The Mn2+ quench technique, using fura-2 fluorescence, demonstrated that agonist-stimulated Ca2+ oscillations were associated with an increase in plasma membrane Mn2+ permeability. However, no cyclic fluctuations in Mn2+ influx were resolved over the period of [Ca2+]i spiking. 3. In whole-cell patch clamped cells an imposed potential of +80 mV was shown to block the thapsigargin-induced Ca2+ influx. Histamine and Ins(2,4,5)P3-induced [Ca2+]i oscillations were tested for the phase dependence on extracellular Ca2+ by rapidly switching the membrane potential to +80 mV, reversibly blocking Ca2+ influx. Ca2+ spikes were abolished by steps to +80 mV made at the point of spike initiation but not by steps made after development of the rapid rising phase of the spike. Steps of membrane potential to +80 mV, for increasing periods of time during the interspike period, increased the latency to the next [Ca2+]i spike by up to a maximum of approximately 150% of the control interspike interval. 4. It is concluded that the extracellular Ca2+ dependence of the histamine-induced [Ca2+]i oscillations is due to a crucial role of Ca2+ influx during spike initiation and an additional important role in setting the interspike interval. The results obtained can be interpreted in terms of a constant stimulated Ca2+ influx during [Ca2+]i spiking.
机译:1.使用Ca2 +成像,膜片钳和单细胞indo-1荧光技术,在162多个HeLa细胞中研究了组胺刺激的[Ca2 +] i振荡。 2. HeLa细胞中的[Ca2 +] i振荡强烈依赖于细胞外Ca2 +,并且也被细胞外添加Cd2 +(100 microM)阻止。使用呋喃2荧光的Mn2 +淬灭技术表明,激动剂刺激的Ca2 +振荡与质膜Mn2 +渗透性的增加有关。但是,在[Ca2 +] i加标期间,没有解决Mn2 +内流的周期性波动。 3.在全细胞膜片钳细胞中,施加+80 mV的电势可阻止毒胡萝卜素诱导的Ca2 +内流。组胺和Ins(2,4,5)P3诱导的[Ca2 +] i振荡通过快速将膜电位切换至+80 mV来可逆地阻止Ca2 +流入,从而测试了对细胞外Ca2 +的相位依赖性。 Ca2 +尖峰通过在尖峰起始点达到+80 mV的步长而被废除,而不是由尖峰的快速上升阶段形成后的步长取消。在尖峰间的时间内,膜电位逐步上升至+80 mV的步长,使下一个[Ca2 +] i尖峰的潜伏期增加了最多至对照尖峰间间隔的150%。 4.结论是,组胺诱导的[Ca2 +] i振荡的细胞外Ca2 +依赖性归因于Ca2 +涌入在尖峰启动过程中的关键作用,以及在设置突突间隔之间的重要作用。可以根据[Ca2 +] i掺入过程中不断激发的Ca2 +流入来解释获得的结果。

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