Valero Ruth A, Senovilla Laura, Núñez Lucía, Villalobos Carlos
Instituto de Biología y Genética Molecular (IBGM), Universidad de Valladolid and Consejo Superior de Investigaciones Científicas (CSIC), Sanz y Forés s/n, Valladolid 47003, Spain.
Cell Calcium. 2008 Sep;44(3):259-69. doi: 10.1016/j.ceca.2007.12.002. Epub 2008 Feb 1.
Store-operated Ca2+ entry (SOCE), a Ca2+ influx pathway involved in cell proliferation, depends on mitochondrial Ca2+ uptake, a Ca2+ influx that is driven by the mitochondrial potential (DeltaPsi). Whereas much attention has been paid to the Ca2+-dependence of mitochondrial Ca2+ uptake, its dependence on DeltaPsi remains largely in qualitative terms. We have studied the dose-dependent effects of a mild mitochondrial uncoupler, salicylate, on DeltaPsi, mitochondrial Ca2+ concentration ([Ca2+]mit), SOCE and cell proliferation by fluorescence microscopy and photon counting of cells expressing a low-affinity aequorin targeted to mitochondria. These data and a novel algorithm to convert fluorescence values of tetramethylrhodamine (TMR) probes into millivolts provide the opportunity of quantifying the relationship among the above parameters. We found that a small mitochondrial depolarisation is sufficient to inhibit largely mitochondrial Ca2+ uptake, leading to SOCE inactivation and prevention of cell proliferation. Conversely, mitochondrial hyperpolarisation increased the activity of the Ca2+-dependent transcription factor NFAT and promoted cell proliferation. Thus, small changes in DeltaPsi influence largely Ca2+ uptake by mitochondria, cytosolic Ca2+ signals and the downstream signalling pathway to cell proliferation.
store - operated Ca2+内流(SOCE)是一种参与细胞增殖的Ca2+内流途径,它依赖于线粒体Ca2+摄取,而线粒体Ca2+摄取是一种由线粒体膜电位(ΔΨ)驱动的Ca2+内流。尽管人们对线粒体Ca2+摄取的Ca2+依赖性给予了很多关注,但其对ΔΨ的依赖性在很大程度上仍停留在定性描述上。我们通过荧光显微镜和对表达靶向线粒体的低亲和力水母发光蛋白的细胞进行光子计数,研究了轻度线粒体解偶联剂水杨酸盐对ΔΨ、线粒体Ca2+浓度([Ca2+]mit)、SOCE和细胞增殖的剂量依赖性影响。这些数据以及一种将四甲基罗丹明(TMR)探针的荧光值转换为毫伏的新算法,为量化上述参数之间的关系提供了机会。我们发现,线粒体的小去极化足以在很大程度上抑制线粒体Ca2+摄取,导致SOCE失活并阻止细胞增殖。相反,线粒体超极化增加了Ca2+依赖性转录因子NFAT的活性并促进细胞增殖。因此,ΔΨ的微小变化在很大程度上影响线粒体对Ca2+的摄取、胞质Ca2+信号以及细胞增殖的下游信号通路。