Duchen M R, Leyssens A, Crompton M
Department of Physiology, University College London, London WC1E 6BT, United Kingdom.
J Cell Biol. 1998 Aug 24;142(4):975-88. doi: 10.1083/jcb.142.4.975.
Digital imaging of mitochondrial potential in single rat cardiomyocytes revealed transient depolarizations of mitochondria discretely localized within the cell, a phenomenon that we shall call "flicker." These events were usually highly localized and could be restricted to single mitochondria, but they could also be more widely distributed within the cell. Contractile waves, either spontaneous or in response to depolarization with 50 mM K+, were associated with propagating waves of mitochondrial depolarization, suggesting that propagating calcium waves are associated with mitochondrial calcium uptake and consequent depolarization. Here we demonstrate that the mitochondrial flicker was directly related to the focal release of calcium from sarcoplasmic reticular (SR) calcium stores and consequent uptake of calcium by local mitochondria. Thus, the events were dramatically reduced by (a) depletion of SR calcium stores after long-term incubation in EGTA or thapsigargin (500 nM); (b) buffering intracellular calcium using BAPTA-AM loading; (c) blockade of SR calcium release with ryanodine (30 microM); and (d) blockade of mitochondrial calcium uptake by microinjection of diaminopentane pentammine cobalt (DAPPAC), a novel inhibitor of the mitochondrial calcium uniporter. These observations demonstrate that focal SR calcium release results in calcium microdomains sufficient to promote local mitochondrial calcium uptake, suggesting a tight coupling of calcium signaling between SR release sites and nearby mitochondria.
对单个大鼠心肌细胞线粒体电位进行数字成像显示,细胞内离散定位的线粒体存在短暂去极化现象,我们将这种现象称为“闪烁”。这些事件通常高度局限,可能仅限于单个线粒体,但也可能在细胞内更广泛分布。收缩波,无论是自发的还是对50 mM K⁺去极化的反应,都与线粒体去极化的传播波相关,这表明传播性钙波与线粒体钙摄取及随后的去极化有关。在此我们证明,线粒体闪烁与肌浆网(SR)钙库中钙的局部释放以及局部线粒体随后对钙的摄取直接相关。因此,通过以下方式这些事件显著减少:(a) 在EGTA或毒胡萝卜素(500 nM)中长期孵育后SR钙库耗竭;(b) 使用BAPTA-AM负载缓冲细胞内钙;(c) 用ryanodine(30 microM)阻断SR钙释放;以及(d) 通过显微注射二氨基戊烷五胺钴(DAPPAC,一种新型线粒体钙单向转运体抑制剂)阻断线粒体钙摄取。这些观察结果表明,局部SR钙释放导致足以促进局部线粒体钙摄取的钙微区,提示SR释放位点与附近线粒体之间钙信号的紧密偶联。