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Reduced mitochondrial coupling in vivo alters cellular energetics in aged mouse skeletal muscle

机译:体内线粒体偶联的减少改变了老年小鼠骨骼肌的细胞能量

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摘要

The mitochondrial theory of ageing proposes that the accumulation of oxidative damage to mitochondria leads to mitochondrial dysfunction and tissue degeneration with age. However, no consensus has emerged regarding the effects of ageing on mitochondrial function, particularly for mitochondrial coupling (P/O). One of the main barriers to a better understanding of the effects of ageing on coupling has been the lack of in vivo approaches to measure P/O. We use optical and magnetic resonance spectroscopy to independently quantify mitochondrial ATP synthesis and O2 uptake to determine in vivo P/O. Resting ATP demand (equal to ATP synthesis) was lower in the skeletal muscle of 30-month-old C57Bl/6 mice compared to 7-month-old controls (21.9 ± 1.5 versus 13.6 ± 1.7 nmol ATP (g tissue)−1 s−1, P = 0.01). In contrast, there was no difference in the resting rates of O2 uptake between the groups (5.4 ± 0.6 versus 8.4 ± 1.6 nmol O2 (g tissue)−1 s−1). These results indicate a nearly 50% reduction in the mitochondrial P/O in the aged animals (2.05 ± 0.07 versus 1.05 ± 0.36, P = 0.02). The higher resting ADP (30.8 ± 6.8 versus 58.0 ± 9.5 μmol g−1, P = 0.05) and decreased energy charge (ATP/ADP) (274 ± 70 versus 84 ± 16, P = 0.03) in the aged mice is consistent with an impairment of oxidative ATP synthesis. Despite the reduced P/O, uncoupling protein 3 protein levels were not different in the muscles of the two groups. These results demonstrate reduced mitochondrial coupling in aged skeletal muscle that alters cellular metabolism and energetics.
机译:线粒体衰老理论认为,随着年龄的增长,线粒体氧化损伤的累积会导致线粒体功能障碍和组织变性。然而,关于衰老对线粒体功能的影响,尤其是对于线粒体偶联(P / O),尚未达成共识。更好地了解衰老对耦合的影响的主要障碍之一是缺乏体内测量P / O的方法。我们使用光学和磁共振波谱来独立地定量线粒体ATP合成和O2吸收以确定体内P / O。与7个月大的对照组相比,30个月大的C57Bl / 6小鼠的骨骼肌中的静止ATP需求(等于ATP合成)更低(21.9±1.5对13.6±1.7 nmol ATP(g组织) -1 s -1 ,P = 0.01)。相比之下,各组之间的摄氧静息率没有差异(5.4±0.6 vs 8.4±1.6 nmol O2(g组织) -1 s -1 )。这些结果表明,老年动物的线粒体P / O降低了近50%(2.05±0.07对1.05±0.36,P = 0.02)。较高的静息ADP(30.8±6.8对58.0±9.5μmolg -1 ,P = 0.05)和降低的能量电荷(ATP / ADP)(274±70对84±16,P = 0.03)在衰老小鼠体内的这种变化与氧化ATP合成的损害相一致。尽管P / O降低,但两组肌肉中的解偶联蛋白3蛋白水平没有差异。这些结果表明,老年骨骼肌线粒体偶联减少,改变了细胞的代谢和能量。

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