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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Imaging of mitochondrial Ca2+ dynamics in astrocytes using cell-specific mitochondria-targeted GCaMP5G/6s: Mitochondrial Ca2+ uptake and cytosolic Ca2+ availability via the endoplasmic reticulum store
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Imaging of mitochondrial Ca2+ dynamics in astrocytes using cell-specific mitochondria-targeted GCaMP5G/6s: Mitochondrial Ca2+ uptake and cytosolic Ca2+ availability via the endoplasmic reticulum store

机译:使用细胞特异性线粒体靶向的GCaMP5G / 6s对星形胶质细胞中线粒体Ca2 +动力学的成像:线粒体Ca2 +的吸收和胞质Ca2 +通过内质网存储的可用性

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Mitochondrial Ca2+ plays a critical physiological role in cellular energy metabolism and signaling, and its overload contributes to various pathological conditions including neuronal apoptotic death in neurological diseases. Live cell mitochondrial Ca2+ imaging is an important approach to understand mitochondrial Ca2+ dynamics. Recently developed GCaMP genetically-encoded Ca2+ indicators provide unique opportunity for high sensitivity/resolution and cell type-specific mitochondrial Ca2+ imaging. In the current study, we implemented cell-specific mitochondrial targeting of GCaMP5G/6s (mito-GCaMP5G/6s) and used two-photon microscopy to image astrocytic and neuronal mitochondrial Ca2+ dynamics in culture, revealing Ca2+ uptake mechanism by these organelles in response to cell stimulation. Using these mitochondrial Ca2+ indicators, our results show that mitochondrial Ca2+ uptake in individual mitochondria in cultured astrocytes and neurons can be seen after stimulations by ATP and glutamate, respectively. We further studied the dependence of mitochondrial Ca2+ dynamics on cytosolic Ca2+ changes following ATP stimulation in cultured astrocytes by simultaneously imaging mitochondrial and cytosolic Ca2+ increase using mito-GCaMP5G and a synthetic organic Ca2+ indicator, x-Rhod-1, respectively. Combined with molecular intervention in Ca2+ signaling pathway, our results demonstrated that the mitochondrial Ca2+ uptake is tightly coupled with inositol 1,4,5-trisphosphate receptor-mediated Ca2+ release from the endoplasmic reticulum and the activation of G protein-coupled receptors. The current study provides a novel approach to image mitochondrial Ca2+ dynamics as well as Ca2+ interplay between the endoplasmic reticulum and mitochondria, which is relevant for neuronal and astrocytic functions in health and disease. (C) 2014 Elsevier Ltd. All rights reserved.
机译:线粒体Ca2 +在细胞能量代谢和信号传导中起着至关重要的生理作用,其超负荷导致各种病理状况,包括神经疾病中的神经元凋亡死亡。活细胞线粒体Ca2 +成像是了解线粒体Ca2 +动态的重要方法。最近开发的GCaMP基因编码的Ca2 +指示剂为高灵敏度/分辨率和特定细胞类型的线粒体Ca2 +成像提供了独特的机会。在当前的研究中,我们实施了针对细胞的线粒体靶向GCaMP5G / 6s(mito-GCaMP5G / 6s),并使用双光子显微镜对培养的星形细胞和神经元线粒体Ca2 +动力学进行成像,揭示了这些细胞器对Ca2 +吸收的机制细胞刺激。使用这些线粒体Ca2 +指标,我们的结果表明,在分别受ATP和谷氨酸刺激后,可以观察到培养的星形胶质细胞和神经元中单个线粒体中线粒体Ca2 +的吸收。我们通过利用线粒体GCaMP5G和合成的有机Ca2 +指示剂x-Rhod-1分别对线粒体和胞质Ca2 +的增加同时进行成像,进一步研究了在星形胶质细胞中ATP刺激后线粒体Ca2 +动力学对胞质Ca2 +变化的依赖性。结合分子对Ca2 +信号通路的干预,我们的结果表明线粒体Ca2 +的吸收与内质网中肌醇1,4,5-三三磷酸受体介导的Ca2 +释放以及G蛋白偶联受体的激活紧密相关。当前的研究提供了一种新颖的方法来成像线粒体Ca2 +动态以及内质网和线粒体之间的Ca2 +相互作用,这与健康和疾病中的神经元和星形细胞功能有关。 (C)2014 Elsevier Ltd.保留所有权利。

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