首页> 外文期刊>The Journal of Physiology >Modulation of calcium signals by intracellular pH in isolated rat pancreatic acinar cells.
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Modulation of calcium signals by intracellular pH in isolated rat pancreatic acinar cells.

机译:在分离的大鼠胰腺腺泡细胞中通过细胞内pH调节钙信号。

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1. We have investigated the interactions between intracellular pH (pH1) and the intracellular free calcium concentration ([Ca2+]i) in isolated rat pancreatic acinar cells. The fluorescent dyes fura-2 and BCECF were used to measure [Ca2+]i and pHi, respectively. 2. Sodium acetate and ammonium chloride (NH4Cl) were used to acidify and alkalinize pHi, respectively. Cytosolic acidification had no effect on [Ca2+]i in resting pancreatic acinar cells, whereas cytosolic alkalinization released Ca2+ from intracellular stores. 3. Cytosolic acidification using either acetate or a CO2-HCO3(-)-buffered medium enhanced Ca2+ signals evoked by acetylcholine (ACh) and cholecystokinin (CCK). In contrast, both NH4Cl and trimethylamine (TMA) inhibited Ca2+ signals during stimulation with either ACh or CCK. This inhibitory effect was also observed in the absence of extracellular Ca2+, and was therefore not due to changes in Ca2+ entry. 4. Calcium oscillations evoked by physiological concentrations of CCK were enhanced by cytosolic acidification and inhibited by cytosolic alkalinization. 5. In order to determine the effects of pHi upon Ca2+ handling by intracellular Ca2+ stores, intraorganellar [Ca2+] was monitored using the low affinity Ca2+ indicator mag-fura-2 in permeabilized cells. Addition of NH4Cl, which is expected to alkalinize intraorganellar pH, did not alter intraorganellar [Ca2+] in permeabilized cells, suggesting that changing intraorganellar pH does not release Ca2+ from intracellular stores. Addition of NH4Cl or acetate also did not affect the rate of Ca2+ release induced by inositol 1,4,5-trisphosphate (InsP3). 6. Modification of extraorganellar ('cytosolic') pH did not affect the rate of ATP-dependent Ca2+ uptake into stores, but did modify the rate of Ca2+ release evoked by submaximal concentrations of InsP3. The rate of Ca2+ release was increased at more alkaline extraorganellar pHs. These results would suggest that manipulation of intraorganellar pH does not affect Ca2+ handling by the intracellular stores. In contrast, extraorganellar ('cytosolic') pH does affect InsP3-induced Ca2+ release from the stores. 7. In conclusion, changes in intracellular pH in pancreatic acinar cells can profoundly alter cytosolic [Ca2+]. This may shed light on earlier observations whereby cell-permeant weak acids and bases can modulate fluid secretion in epithelia.
机译:1.我们研究了离体大鼠胰腺腺泡细胞中细胞内pH(pH1)与细胞内游离钙浓度([Ca2 +] i)之间的相互作用。荧光染料fura-2和BCECF分别用于测量[Ca2 +] i和pHi。 2.分别使用乙酸钠和氯化铵(NH4Cl)酸化和碱化pHi。胞质酸化对静止的胰腺腺泡细胞中的[Ca2 +] i无影响,而胞质碱化则从细胞内储存中释放Ca2 +。 3.使用乙酸盐或CO2-HCO3(-)缓冲的介质进行的胞质酸化增强了乙酰胆碱(ACh)和胆囊收缩素(CCK)引起的Ca2 +信号。相反,在用ACh或CCK刺激期间,NH4Cl和三甲胺(TMA)均抑制Ca2 +信号。在不存在细胞外Ca2 +的情况下也观察到这种抑制作用,因此不是由于Ca2 +进入的变化。 4.胞浆酸化可增强生理浓度CCK引起的钙振荡,而胞浆碱化可抑制钙振荡。 5.为了确定pHi对细胞内Ca2 +贮藏所处理Ca2 +的影响,使用低亲和力Ca2 +指示剂mag-fura-2在通透细胞中监测细胞内[Ca2 +]。预期会碱化细胞内pH的NH4Cl的添加不会改变通透性细胞中细胞内[Ca2 +]的浓度,这表明改变细胞内pH不会从细胞内储存中释放Ca2 +。 NH4Cl或乙酸盐的添加也不会影响肌醇1,4,5-三磷酸(InsP3)诱导的Ca2 +释放速率。 6.改变细胞外(“胞质”)pH值不会影响ATP依赖的Ca2 +吸收入库的速率,但确实会改变InsP3的最大浓度所引起的Ca2 +释放速率。 Ca2 +的释放速率在更多的碱性有机酸碱度pH下增加。这些结果表明,对细胞内pH的操纵不会影响细胞内存储对Ca 2+的处理。相比之下,细胞外(“胞质”)pH值确实会影响InsP3诱导的Ca2 +从存储中的释放。 7.总之,胰腺腺泡细胞内细胞内pH的变化可以深刻改变胞质[Ca2 +]。这可能为早期的观察提供了启示,据此细胞渗透性弱酸和碱可以调节上皮细胞的液体分泌。

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