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受体刺激、G蛋白激活、三磷酸肌醇的胞内应用或钙离子所引发的细胞质钙离子振荡:单个胰腺腺泡细胞中的同步显微荧光测定法和钙离子依赖性氯离子电流记录

Cytoplasmic Ca2+ oscillations evoked by receptor stimulation, G-protein activation, internal application of inositol trisphosphate or Ca2+: simultaneous microfluorimetry and Ca2+ dependent Cl- current recording in single pancreatic acinar cells.

作者信息

Osipchuk Y V, Wakui M, Yule D I, Gallacher D V, Petersen O H

机构信息

MRC Secretory Control Research Group, University of Liverpool, UK.

出版信息

EMBO J. 1990 Mar;9(3):697-704. doi: 10.1002/j.1460-2075.1990.tb08162.x.

Abstract

The effects of acetylcholine (ACh), cholecystokinin (CCK), internally applied GTP-gamma-S, inositol trisphosphate [Ins (1,4,5) P3] or Ca2+ on the cytoplasmic free Ca2+ concentration [( Ca2+]i) were assessed by simultaneous microfluorimetry (fura-2) and measurement of the Ca2(+)-dependent Cl- current (patch-clamp whole-cell recording) in single internally perfused mouse pancreatic acinar cells. ACh (0.1-0.2 microM) evoked an oscillating increase in [Ca2+]i measured in the cell as a whole (microfluorimetry) which was synchronous with oscillations in the Ca2(+)-dependent Cl- current reporting [Ca2+]i close to the cell membrane. In the same cells a lower ACh concentration (0.05 microM) evoked shorter repetitive Cl- current pulses that were not accompanied by similar spikes in the microfluorimetric recording. When cells did not respond to 0.1 microM ACh, caffeine (1 mM) added on top of the sustained ACh stimulus resulted in [Ca2+]i oscillations seen synchronously in both types of recording. CCK (10 nM) also evoked [Ca2+]i oscillations, but with much longer intervals between slightly broader Ca2+ pulses. Internal perfusion with 100 microM GTP-gamma-S evoked [Ca2+]i oscillations with a similar pattern. Ins (1,4,5) P3 (10 microM) evoked repetitive shortlasting spikes in [Ca2+]i that were only seen in the Cl- current traces, except in one small cell where these spikes were also observed synchronously in the microfluorimetric recording. Caffeine (1 mM) broadened these Ca2+ pulses. [Ca2+]i was also directly changed, bypassing the normal signalling process, by infusion of a low or high Ca2+ solution into the pipette.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过同步微量荧光测定法(fura-2)以及对单个内部灌注的小鼠胰腺腺泡细胞中Ca2+依赖性Cl-电流的测量(膜片钳全细胞记录),评估了乙酰胆碱(ACh)、胆囊收缩素(CCK)、内部施加的GTP-γ-S、肌醇三磷酸[Ins(1,4,5)P3]或Ca2+对细胞质游离Ca2+浓度[Ca2+]i的影响。ACh(0.1 - 0.2微摩尔)引起整个细胞中测量到的[Ca2+]i呈振荡性增加(微量荧光测定法),这与靠近细胞膜处报告[Ca2+]i的Ca2+依赖性Cl-电流的振荡同步。在相同细胞中,较低浓度的ACh(0.05微摩尔)引起较短的重复性Cl-电流脉冲,而微量荧光记录中未伴随类似的峰值。当细胞对0.1微摩尔ACh无反应时,在持续的ACh刺激基础上添加咖啡因(1毫摩尔)会导致两种记录中同步出现[Ca2+]i振荡。CCK(10纳摩尔)也引起[Ca2+]i振荡,但在稍宽的Ca2+脉冲之间的间隔长得多。用100微摩尔GTP-γ-S进行内部灌注引起具有类似模式的[Ca2+]i振荡。Ins(1,4,5)P3(10微摩尔)引起[Ca2+]i的重复性短暂峰值,仅在Cl-电流记录中可见,除了一个小细胞,在该细胞的微量荧光记录中也同步观察到了这些峰值。咖啡因(1毫摩尔)使这些Ca2+脉冲变宽。通过向移液管中注入低钙或高钙溶液,绕过正常信号传导过程,[Ca2+]i也会直接发生变化。(摘要截取自250字)

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