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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Bcl2 mitigates Ca(2+) entry and mitochondrial Ca(2+) overload through downregulation of L-type Ca(2+) channels in PC12 cells.
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Bcl2 mitigates Ca(2+) entry and mitochondrial Ca(2+) overload through downregulation of L-type Ca(2+) channels in PC12 cells.

机译:Bcl2通过下调PC12细胞中的L型Ca(2+)通道来减轻Ca(2+)进入和线粒体Ca(2+)过载。

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Altered calcium homeostasis and increased cytosolic calcium concentrations ([Ca(2+)](c)) are linked to neuronal apoptosis in epilepsy and in cerebral ischemia, respectively. Apoptotic programmed cell death is regulated by the antiapoptotic Bcl2 family of proteins. Here, we investigated the role of Bcl2 on calcium (Ca(2+)) homeostasis in PC12 cells, focusing on L-type voltage-dependent calcium channels (VDCC). Cytosolic Ca(2+) transients ([Ca(2+)](c)) and changes of mitochondrial Ca(2+) concentrations ([Ca(2+)](m)) were monitored using cytosolic and mitochondrially targeted aequorins of control PC12 cells and PC12 cells stably overexpressing Bcl2. We found that: (i) the [Ca(2+)](c) and [Ca(2+)](m) elevations elicited by K(+) pulses were markedly depressed in Bcl2 cells, with respect to control cells; (ii) such depression of [Ca(2+)](m) was not seen either in digitonin-permeabilized cells or in intact cells treated with ionomycin; (iii) the [Ca(2+)](c) transient depression seen in Bcl2 cells was reversedby shRNA transfection, as well as by the Bcl2 inhibitor HA14-1; (iv) the L-type Ca(2+) channel agonist Bay K 8644 enhanced K(+)-evoked [Ca(2+)](m) peak fourfold in Bcl2, and twofold in control cells; (v) in current-clamped cells the depolarization evoked by K(+) generated a more hyperpolarized voltage step in Bcl2, as compared to control cells. Taken together, our experiments suggest that the reduction of the [Ca(2+)](c) and [Ca(2+)](m) transients elicited by K(+), in PC12 cells overexpressing Bcl2, is related to the reduction of Ca(2+) entry through L-type Ca(2+) channels. This may be due to the fact that Bcl2 mitigates cell depolarization, thus diminishing the recruitment of L-type Ca(2+) channels, the subsequent Ca(2+) entry, and mitochondrial Ca(2+) overload.
机译:钙稳态的改变和胞质钙浓度的增加([Ca(2 +)](c))分别与癫痫和脑缺血中的神经元凋亡有关。程序性细胞死亡由抗凋亡的Bcl2家族蛋白调控。在这里,我们调查了PC12细胞中Bcl2对钙(Ca(2+))稳态的作用,重点是L型电压依赖性钙通道(VDCC)。胞质Ca(2+)瞬变([Ca(2 +)](c))和线粒体Ca(2+)浓度([Ca(2 +)](m))的变化使用细胞质和线粒体靶向的水母发光蛋白进行监测控制PC12细胞和稳定表达Bcl2的PC12细胞。我们发现:(i)在Bcl2细胞中,相对于对照细胞,由K(+)脉冲引起的[Ca(2 +)](c)和[Ca(2 +)](m)升高明显降低; (ii)在洋地黄素渗透性细胞或经离子霉素处理的完整细胞中均未见到[Ca(2 +)](m)降低的现象; (iii)通过shRNA转染以及Bcl2抑制剂HA14-1逆转了在Bcl2细胞中看到的[Ca(2 +)](c)短暂抑制。 (iv)L型Ca(2+)通道激动剂Bay K 8644增强了K(+)诱发的[Ca(2 +)](m)峰,在Bcl2中为四倍,而在对照细胞中为两倍; (v)在电流钳制的细胞中,与对照细胞相比,由K(+)引起的去极化在Bcl2中产生了更多的超极化电压阶跃。综上所述,我们的实验表明,在过表达Bcl2的PC12细胞中,由K(+)引起的[Ca(2 +)](c)和[Ca(2 +)](m)瞬态的减少与通过L型Ca(2+)通道减少Ca(2+)进入。这可能是由于Bcl2减轻了细胞的去极化作用,从而减少了L型Ca(2+)通道的募集,随后的Ca(2+)进入和线粒体Ca(2+)超载。

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