Department of Cell Biology and Morphology, University of Lausanne, Lausanne, Switzerland.
PLoS One. 2011;6(12):e28505. doi: 10.1371/journal.pone.0028505. Epub 2011 Dec 1.
The bioenergetic status of cells is tightly regulated by the activity of cytosolic enzymes and mitochondrial ATP production. To adapt their metabolism to cellular energy needs, mitochondria have been shown to exhibit changes in their ionic composition as the result of changes in cytosolic ion concentrations. Individual mitochondria also exhibit spontaneous changes in their electrical potential without altering those of neighboring mitochondria. We recently reported that individual mitochondria of intact astrocytes exhibit spontaneous transient increases in their Na(+) concentration. Here, we investigated whether the concentration of other ionic species were involved during mitochondrial transients. By combining fluorescence imaging methods, we performed a multiparameter study of spontaneous mitochondrial transients in intact resting astrocytes. We show that mitochondria exhibit coincident changes in their Na(+) concentration, electrical potential, matrix pH and mitochondrial reactive oxygen species production during a mitochondrial transient without involving detectable changes in their Ca(2+) concentration. Using widefield and total internal reflection fluorescence imaging, we found evidence for localized transient decreases in the free Mg(2+) concentration accompanying mitochondrial Na(+) spikes that could indicate an associated local and transient enrichment in the ATP concentration. Therefore, we propose a sequential model for mitochondrial transients involving a localized ATP microdomain that triggers a Na(+)-mediated mitochondrial depolarization, transiently enhancing the activity of the mitochondrial respiratory chain. Our work provides a model describing ionic changes that could support a bidirectional cytosol-to-mitochondria ionic communication.
细胞的生物能量状态受细胞质酶活性和线粒体 ATP 生成的紧密调节。为了使新陈代谢适应细胞的能量需求,已经表明线粒体的离子组成会发生变化,这是由于细胞质离子浓度的变化所致。单个线粒体也会表现出其电势能的自发变化,而不会改变相邻线粒体的电势能。我们最近报道,完整星形胶质细胞的单个线粒体表现出其 Na+浓度的自发瞬时增加。在这里,我们研究了在粒体瞬变期间是否涉及其他离子物种的浓度。通过结合荧光成像方法,我们对完整静止星形胶质细胞中的自发线粒体瞬变进行了多参数研究。我们表明,在粒体瞬变期间,线粒体表现出其 Na+浓度、电势能、基质 pH 和线粒体活性氧物质产生的同时变化,而不会涉及其 Ca2+浓度的可检测变化。使用宽场和全内反射荧光成像,我们发现了与线粒体 Na+峰相伴的游离 Mg2+浓度局部瞬时降低的证据,这可能表明局部和瞬时 ATP 浓度增加。因此,我们提出了一个线粒体瞬变的顺序模型,涉及一个局部的 ATP 微域,该微域触发 Na+介导的线粒体去极化,短暂增强线粒体呼吸链的活性。我们的工作提供了一个描述离子变化的模型,该模型可以支持双向胞质-线粒体离子通讯。