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人呼吸道平滑肌细胞中受体激活的钙内流

Receptor-activated calcium influx in human airway smooth muscle cells.

作者信息

Murray R K, Kotlikoff M I

机构信息

Department of Medicine, Hospital of University of Pennsylvania, Philadelphia 19104.

出版信息

J Physiol. 1991 Apr;435:123-44. doi: 10.1113/jphysiol.1991.sp018501.

Abstract
  1. Fluorescence measurements of intracellular calcium concentrations ([Ca2+]i) were made on cultured human airway smooth muscle cells using the dye Fura-2. The response to either histamine (100 microM) or bradykinin (1 microM) was biphasic, with a transient increase in [Ca2+]i followed by a sustained [Ca2+]i increase lasting many minutes. The average steady-state (plateau) [Ca2+]i following agonist activation was 267 +/- 5 nM, whereas the average basal [Ca2+]i was 148 +/- 4 nM. 2. The sustained rise in [Ca2+]i required the continued presence of either histamine or bradykinin and was dependent on extracellular Ca2+. The magnitude of the transient rise in [Ca2+]i was not dependent on extracellular Ca2+. Sustained, receptor-activated rises in [Ca2+]i were rapidly abolished by chelation of extracellular Ca2+, or addition of non-permeant polyvalent cations, whereas these agents had minor effects in the absence of agonist. These data indicate that the sustained increase in [Ca2+]i was dependent on receptor-activated Ca2+ influx. 3. Receptor-activated Ca2+ influx was not affected by treatment with organic Ca2+ channel antagonists (nifedipine (10 microM), nisoldipine (10 microM) or diltiazem (10 microM] or agonists (Bay K 8644 (500 nM to 10 microM) or Bay R 5417 (500 nM]. The magnitude of the sustained rise was also not affected by pre-treatment with ouabain (100 microM) indicating little involvement of Na(+)-Ca2+ exchange in the influx mechanism. 4. Receptor-activated Ca2+ influx could be completely inhibited by several polyvalent cations (Co2+, Mn2+, Ni2+, -Cd2+ or La3+). Quantitative estimates of the potency of block were obtained for Ni2+ and La3+. These measurements indicate that the pKi for Ni2+ was 3.6 and for La3+ was 3.5. 5. Both Mn2+ and Co2+ ions caused a time-dependent quench of intracellular Fura-2; however, permeation of neither ion was increased following receptor activation, indicating that the influx pathway is not permeable to these cations. 6. Fura-2 was used to monitor the rate of Ba2+ entry into airway smooth muscle cells by monitoring the Ca(2+)-Fura-2 and Ba(2+)-Fura-2 isosbestic points as well as the 340 and 380 nm signals. Cell activation did not increase the rate of Ba2+ entry indicating that the Ca2+ influx pathway was poorly permeant to Ba2+ ions. Ba2+ (2 mM) was able to inhibit Ca2+ entry as shown by its effects on the Ba(2+)-independent, Ca(2+)-dependent wavelength (371 nm). 7. The voltage dependence of Ca2+ influx was examined before and after agonist-induced activation. The effect of KCl-induced depolarization prior to cell activation was to cause a slight increase in [Ca2+]i.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 使用Fura-2染料对培养的人气道平滑肌细胞进行细胞内钙浓度([Ca2+]i)的荧光测量。组胺(100 microM)或缓激肽(1 microM)的反应是双相的,[Ca2+]i先短暂增加,随后持续增加并持续数分钟。激动剂激活后的平均稳态(平台期)[Ca2+]i为267±5 nM,而平均基础[Ca2+]i为148±4 nM。2. [Ca2+]i的持续升高需要组胺或缓激肽的持续存在,并且依赖于细胞外Ca2+。[Ca2+]i短暂升高的幅度不依赖于细胞外Ca2+。通过螯合细胞外Ca2+或添加非渗透性多价阳离子,可迅速消除受体激活引起的[Ca2+]i持续升高,而在无激动剂时这些试剂的影响较小。这些数据表明,[Ca2+]i的持续增加依赖于受体激活的Ca2+内流。3. 有机Ca2+通道拮抗剂(硝苯地平(10 microM)、尼索地平(10 microM)或地尔硫卓(10 microM))或激动剂(Bay K 8644(500 nM至10 microM)或Bay R 5417(500 nM))处理对受体激活的Ca2+内流无影响。哇巴因(100 microM)预处理也不影响持续升高的幅度,表明Na(+)-Ca2+交换在流入机制中参与较少。4. 几种多价阳离子(Co2+、Mn2+、Ni2+、-Cd2+或La3+)可完全抑制受体激活的Ca2+内流。获得了Ni2+和La3+阻断效力的定量估计。这些测量表明,Ni2+的pKi为3.6,La3+的pKi为3.5。5. Mn2+和Co2+离子均导致细胞内Fura-2的时间依赖性淬灭;然而,受体激活后两种离子的通透性均未增加,表明流入途径对这些阳离子不通透。6. 通过监测Ca(2+)-Fura-2和Ba(2+)-Fura-2等吸收点以及340和380 nm信号,Fura-2用于监测Ba2+进入气道平滑肌细胞的速率。细胞激活未增加Ba2+进入速率,表明Ca2+内流途径对Ba2+离子的通透性较差。如Ba2+(2 mM)对Ba(2+)非依赖性、Ca(2+)依赖性波长(371 nm)的影响所示,Ba2+能够抑制Ca2+进入。7. 在激动剂诱导激活前后检查Ca2+内流的电压依赖性。细胞激活前KCl诱导的去极化作用是使[Ca2+]i略有增加。(摘要截断于400字)

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