Instituto de Ciências Biomédicas, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Instituto de Bioquímica Médica Leopoldo de Meis, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Sci Rep. 2019 Feb 13;9(1):1986. doi: 10.1038/s41598-019-38609-4.
Mitochondria play an important role in providing ATP for muscle contraction. Muscle physiology is compromised in Duchenne muscular dystrophy (DMD) and several studies have shown the involvement of bioenergetics. In this work we investigated the mitochondrial physiology in fibers from fast-twitch muscle (EDL) and slow-twitch muscle (soleus) in the mdx mouse model for DMD and in control C57BL/10J mice. In our study, multiple mitochondrial respiratory parameters were investigated in permeabilized muscle fibers from 12-week-old animals, a critical age where muscle regeneration is observed in the mdx mouse. Using substrates of complex I and complex II from the electron transport chain, ADP and mitochondrial inhibitors, we found in the mdx EDL, but not in the mdx soleus, a reduction in coupled respiration suggesting that ATP synthesis is affected. In addition, the oxygen consumption after addition of complex II substrate is reduced in mdx EDL; the maximal consumption rate (measured in the presence of uncoupler) also seems to be reduced. Mitochondria are involved in calcium regulation and we observed, using alizarin stain, calcium deposits in mdx muscles but not in control muscles. Interestingly, more calcium deposits were found in mdx EDL than in mdx soleus. These data provide evidence that in 12-week-old mdx mice, calcium is accumulated and mitochondrial function is disturbed in the fast-twitch muscle EDL, but not in the slow-twitch muscle soleus.
线粒体在为肌肉收缩提供 ATP 方面发挥着重要作用。肌肉生理学在杜氏肌营养不良症(DMD)中受到损害,多项研究表明生物能量学的参与。在这项工作中,我们研究了 DMD 模型中的快速抽搐肌肉(EDL)和慢速抽搐肌肉(比目鱼肌)中的纤维中线粒体生理学,以及对照 C57BL/10J 小鼠。在我们的研究中,研究了 12 周龄动物的通透性肌肉纤维中的多个线粒体呼吸参数,这是 mdx 小鼠中观察到肌肉再生的关键年龄。使用电子传递链中复合物 I 和复合物 II 的底物、ADP 和线粒体抑制剂,我们发现 mdx EDL 中的偶联呼吸减少,表明 ATP 合成受到影响,但在 mdx 比目鱼肌中没有。此外,在添加复合物 II 底物后,氧消耗减少;最大消耗率(在存在解偶联剂的情况下测量)似乎也降低了。线粒体参与钙调节,我们使用茜素红染色观察到 mdx 肌肉中的钙沉积,但在对照肌肉中没有。有趣的是,mdx EDL 中的钙沉积比 mdx 比目鱼肌中更多。这些数据表明,在 12 周龄的 mdx 小鼠中,钙在快速抽搐肌肉 EDL 中积累,线粒体功能受到干扰,但在慢速抽搐肌肉比目鱼肌中没有。