首页> 外文期刊>The Journal of Membrane Biology >Release of Calcium from Mitochondrial and Nonmitochondrial Intracellular Stores in Mouse Pancreatic Acinar Cells by Hydrogen Peroxide
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Release of Calcium from Mitochondrial and Nonmitochondrial Intracellular Stores in Mouse Pancreatic Acinar Cells by Hydrogen Peroxide

机译:过氧化氢从小鼠胰腺腺泡细胞线粒体和非线粒体内的钙释放

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In the present study we have studied how [Ca2+] i is influenced by H2O2 in collagenase-dispersed mouse pancreatic acinar cells and the mechanism underlying this effect by using a digital microspectrofluorimetric system. In the presence of normal extracellular calcium concentration, perfusion of pancreatic acinar cells with 1 mm H2O2 caused a slow sustained [Ca2+] i increase, reaching a stable plateau after 10–15 min of perfusion. This increase induced by H2O2 was also observed in a nominally calcium-free medium, reflecting the release of calcium from intracellular store(s). Application of 1 mm H2O2 to acinar cells, in which nonmitochondrial agonist-releasable calcium pools had been previously depleted by a maximal concentration of CCK-8 (1 nm) or thapsigargin (0.5 μm) was still able to induce calcium release. Similar results were observed when thapsigargin was substituted for the mitochondrial uncoupler FCCP (0.5 μm). By contrast, simultaneous addition of thapsigargin and FCCP clearly abolished the H2O2-induced calcium increase. Interestingly, co-incubation of intact pancreatic acinar cells with CCK-8 plus thapsigargin and FCCP in the presence of H2O2 did not significantly affect the transient calcium spike induced by the depletion of nonmitochondrial and mitochondrial agonist-releasable calcium pools, but was followed by a sustained increase of [Ca2+] i . In addition, H2O2 was able to block calcium efflux evoked by CCK and thapsigargin. Finally, the transient increase in [Ca2+] i induced by H2O2 was abolished by an addition of 2 mm dithiothreitol (DTT), a sulfhydryl reducing agent. Our results show that H2O2 releases calcium from CCK-8- and thapsigargin-sensitive intracellular stores and from mitochondria. The action of H2O2 is likely mediated by oxidation of sulfhydryl groups of calcium-ATPases.
机译:在本研究中,我们使用胶原酶研究了在胶原酶分散的小鼠胰腺腺泡细胞中H2 O2 对[Ca2 + ] i 的影响及其机制。数字微光谱荧光系统。在细胞外钙浓度正常的情况下,用1 mm H2 O2 灌注胰腺腺泡细胞会导致[Ca2 + ] i 缓慢缓慢的持续增加,并在达到稳定水平后灌注10–15分钟。在名义上不含钙的培养基中也观察到了H2O2诱导的这种增加,反映了钙从细胞内存储中释放出来。 1 mm H2 O2 在腺泡细胞中的应用,在腺泡细胞中,非线粒体激动剂可释放的钙池先前已被最大浓度的CCK-8(1 nm)或毒胡萝卜素(0.5μm)耗尽。能够诱导钙释放。当用毒胡萝卜素代替线粒体解偶联剂FCCP(0.5μm)时,观察到相似的结果。相反,同时添加毒胡萝卜素和FCCP显然消除了H2 O2 引起的钙增加。有趣的是,在H2 O2 存在下,将完整的胰腺腺泡细胞与CCK-8加thapsigargin和FCCP共同孵育不会显着影响由非线粒体和线粒体激动剂消耗引起的瞬时钙峰值可释放的钙库,但随后[Ca2 + ] i 持续增加。此外,H2 O2 能够阻断CCK和毒胡萝卜素引起的钙外流。最后,通过添加2 mm巯基还原剂二硫苏糖醇(DTT)消除了H2 O2 引起的[Ca2 + ] i 的瞬时增加。我们的结果表明,H2 O2 从CCK-8和毒胡萝卜素敏感的细胞内存储以及线粒体释放钙。 H2 O2 的作用可能是由钙-ATPase的巯基氧化引起的。

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