CeSI-Met - Center for Research on Ageing and Translational Medicine and DNICS - Dept. of Neuroscience, Imaging and Clinical Sciences, University G. d' Annunzio, I-66100, Italy.
CeSI-Met - Center for Research on Ageing and Translational Medicine and DNICS - Dept. of Neuroscience, Imaging and Clinical Sciences, University G. d' Annunzio, I-66100, Italy; Department of Pharmacology and Physiology, University of Rochester Medical Center, Rochester, NY, 14642, USA.
Arch Biochem Biophys. 2019 Mar 15;663:22-33. doi: 10.1016/j.abb.2018.12.017. Epub 2018 Dec 20.
In fast-twitch fibers from adult mice Ca release units (CRUs, i.e. intracellular junctions of excitation-contraction coupling), and mitochondria are structurally linked to each other by small strands, named tethers. We recently showed that aging causes separation of a fraction of mitochondria from CRUs and a consequent impairment of the Ca signaling between the two organelles. However, whether the uncoupling of mitochondria from CRUs is the result of aging per-se or the consequence of reduced muscle activity remains still unclear. Here we studied the association between mitochondria and CRUs: in a) extensor digitorum longus (EDL) muscles from 2 years old mice, either sedentary or trained for 1 year in wheel cages; and b) denervated EDL muscles from adult mice and rats. We analyzed muscle samples using a combination of structural (confocal and electron microscopy), biochemical (assessment of oxidative stress via western blot), and functional (ex-vivo contractile properties, and mitochondrial Ca uptake) experimental procedures. The results collected in structural studies indicate that: a) ageing and denervation result in partial uncoupling between mitochondria and CRUs; b) exercise either maintains (in old mice) or restores (in transiently denervated rats) the association between the two organelles. Functional studies supported the hypothesis that CRU-mitochondria coupling is important for mitochondrial Ca uptake, optimal force generation, and muscle performance. Taken together our results indicate that muscle activity maintains/improves proper association between CRUs and mitochondria.
在成年小鼠的快肌纤维中,钙释放单位(CRU,即兴奋-收缩耦联的细胞内连接)和线粒体通过称为连接丝的小链彼此结构相连。我们最近表明,衰老会导致一部分线粒体与 CRU 分离,从而导致两个细胞器之间的钙信号传导受损。然而,线粒体与 CRU 分离是否是衰老本身的结果,还是肌肉活动减少的结果,仍不清楚。在这里,我们研究了线粒体与 CRU 的关联:a)在 2 岁小鼠的伸趾长肌(EDL)中,要么久坐不动,要么在轮式笼中训练 1 年;b)成年小鼠和大鼠的去神经 EDL 肌肉。我们使用结构(共聚焦和电子显微镜)、生化(通过 Western blot 评估氧化应激)和功能(离体收缩特性和线粒体钙摄取)实验程序组合分析肌肉样本。结构研究收集的结果表明:a)衰老和去神经导致线粒体和 CRU 之间部分解耦;b)运动要么维持(在老年小鼠中),要么恢复(在短暂去神经的大鼠中)两个细胞器之间的关联。功能研究支持了这样一种假设,即 CRU-线粒体偶联对于线粒体钙摄取、最佳力产生和肌肉性能很重要。总之,我们的结果表明,肌肉活动维持/改善了 CRU 和线粒体之间的适当关联。