首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >Intracellular two-phase Ca2+ release and apoptosis controlled by TRP-ML1 channel activity in coronary arterial myocytes
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Intracellular two-phase Ca2+ release and apoptosis controlled by TRP-ML1 channel activity in coronary arterial myocytes

机译:TRP-ML1通道活性控制冠状动脉心肌细胞内细胞内两相Ca2 +的释放和凋亡

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摘要

Activation of the death receptor Fas has been reported to produce a two-phase intracellular Ca2+ release response in coronary arterial myocytes (CAMs), which consists of local Ca2+ bursts via lysosomal transient potential receptor-mucolipin 1 (TRP-ML1) channels and consequent Ca2+ release from the sarcoplasmic reticulum (SR). The present study was designed to explore the molecular mechanism by which lysosomal Ca2+ bursts are coupled with SR Ca2+ release in mouse CAMs and to determine the functional relevance of this lysosome-associated two-phase Ca2+ release to apoptosis, a common action of Fas activation with Fas ligand (FasL). By confocal microscopy, we found that transfection of CAMs with TRP-ML1 small interfering (si)RNA substantially inhibited FasL (10 ng/ml)-induced lysosome Ca2+ bursts and consequent SR Ca2+ release. In contrast, transfection of CAMs with plasmids containing a full-length TRP-ML1 gene enhanced FasL-induced two-phase Ca2+ release. We further demonstrated that FasL significantly increased the colocalization of the lysosomal marker Lamp1 with ryanodine receptor 3 and enhanced a dynamic trafficking of lysosomes to the SR. When CAMs were treated with TRP-ML1 siRNA, FasL-induced interactions between the lysosomes and SR were substantially blocked. Functionally, FasL-induced apoptosis and activation of calpain and calcineurin, the Ca2+ sensitive proteins that mediate apoptosis, were significantly attenuated by silencing TRP-ML1 gene but enhanced by overexpression of TRP-ML1 gene. These results suggest that TRP-ML1 channel-mediated lysosomal Ca2+ bursts upon FasL stimulation promote lysosome trafficking and interactions with the SR, leading to apoptosis of CAMs via a Ca2+-dependent mechanism.
机译:据报道,死亡受体Fas的激活在冠状动脉心肌细胞(CAMs)中产生两阶段的细胞内Ca 2 + 释放反应,该反应由局部Ca 2 + 组成通过溶酶体瞬时电位受体粘蛋白1(TRP-ML1)通道爆发,随后Ca 2 + 从肌浆网(SR)释放。本研究旨在探讨溶酶体Ca 2 + 爆发与小鼠CAM中SR Ca 2 + 释放的分子机制,并确定其功能相关性。溶酶体相关的两相Ca 2 + 释放到细胞凋亡,这是Fas配体(FasL)激活Fas的共同作用。通过共聚焦显微镜,我们发现用TRP-ML1小干扰(si)RNA转染CAMs基本上抑制了FasL(10 ng / ml)诱导的溶酶体Ca 2 + 爆发,并因此导致了SR Ca 2 + 发布。相反,用含有全长TRP-ML1基因的质粒转染CAM可以增强FasL诱导的两相Ca 2 + 释放。我们进一步证明FasL显着增加了溶酶体标记Lamp1与ryanodine受体3的共定位并增强了溶酶体向SR的动态转运。当用TRP-ML1 siRNA处理CAM时,FasL诱导的溶酶体和SR之间的相互作用被基本上阻断了。从功能上讲,FasL诱导的凋亡和钙蛋白酶和钙调神经磷酸酶(介导凋亡的Ca 2 + 敏感蛋白)的激活可被沉默的TRP-ML1基因显着减弱,而被TRP-ML1基因的过表达增强。这些结果表明,在FasL刺激下,TRP-ML1通道介导的溶酶体Ca 2 + 爆发促进了溶酶体运输和与SR的相互作用,导致CAMs通过Ca 2 + 依赖机制。

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