Anmann Tiia, Eimre Margus, Kuznetsov Andrey V, Andrienko Tatiana, Kaambre Tuuli, Sikk Peeter, Seppet Evelin, Tiivel Toomas, Vendelin Marko, Seppet Enn, Saks Valdur A
Laboratory of Bioenergetics, National Institute of Chemical Physics and Biophysics, Tallinn, Estonia.
FEBS J. 2005 Jun;272(12):3145-61. doi: 10.1111/j.1742-4658.2005.04734.x.
The relationships between cardiac cell structure and the regulation of mitochondrial respiration were studied by applying fluorescent confocal microscopy and analysing the kinetics of mitochondrial ADP-stimulated respiration, during calcium-induced contraction in permeabilized cardiomyocytes and myocardial fibers, and in their 'ghost' preparations (after selective myosin extraction). Up to 3 microm free calcium, in the presence of ATP, induced strong contraction of permeabilized cardiomyocytes with intact sarcomeres, accompanied by alterations in mitochondrial arrangement and a significant decrease in the apparent K(m) for exogenous ADP and ATP in the kinetics of mitochondrial respiration. The V(max) of respiration showed a moderate (50%) increase, with an optimum at 0.4 microm free calcium and a decrease at higher calcium concentrations. At high free-calcium concentrations, the direct flux of ADP from ATPases to mitochondria was diminished compared to that at low calcium levels. All of these effects were unrelated either to mitochondrial calcium overload or to mitochondrial permeability transition and were not observed in 'ghost' preparations after the selective extraction of myosin. Our results suggest that the structural changes transmitted from contractile apparatus to mitochondria modify localized restrictions of the diffusion of adenine nucleotides and thus may actively participate in the regulation of mitochondrial function, in addition to the metabolic signalling via the creatine kinase system.
通过应用荧光共聚焦显微镜并分析线粒体ADP刺激呼吸的动力学,研究了心肌细胞结构与线粒体呼吸调节之间的关系。实验对象包括通透化心肌细胞和心肌纤维在钙诱导收缩过程中以及它们的“鬼”制剂(选择性提取肌球蛋白后)。在ATP存在的情况下,高达3微摩尔的游离钙会诱导具有完整肌节的通透化心肌细胞发生强烈收缩,同时伴随着线粒体排列的改变以及线粒体呼吸动力学中外源性ADP和ATP的表观K(m)显著降低。呼吸的V(max)显示出适度(50%)的增加,在0.4微摩尔游离钙时达到最佳,在更高钙浓度时降低。在高游离钙浓度下,与低钙水平相比,ADP从ATP酶到线粒体的直接通量减少。所有这些效应既与线粒体钙超载无关,也与线粒体通透性转换无关,并且在选择性提取肌球蛋白后的“鬼”制剂中未观察到。我们的结果表明,从收缩装置传递到线粒体的结构变化改变了腺嘌呤核苷酸扩散的局部限制,因此除了通过肌酸激酶系统的代谢信号传导外,可能还积极参与线粒体功能的调节。