Division of Pulmonary and Critical Care Medicine, Albany Medical College, Albany, NY, USA.
Department of Molecular and Cellular Physiology, Albany Medical College, Albany, NY, USA.
Sci Adv. 2024 Aug 23;10(34):eado8549. doi: 10.1126/sciadv.ado8549. Epub 2024 Aug 21.
Reduced skeletal muscle mass and oxidative capacity coexist in patients with pulmonary emphysema and are independently associated with higher mortality. If reduced cellular respiration contributes to muscle atrophy in that setting remains unknown. Using a mouse with genetically induced pulmonary emphysema that recapitulates muscle dysfunction, we found that reduced activity of succinate dehydrogenase (SDH) is a hallmark of its myopathic changes. We generated an inducible, muscle-specific SDH knockout mouse that demonstrates lower mitochondrial oxygen consumption, myofiber contractility, and exercise endurance. Respirometry analyses show that in vitro complex I respiration is unaffected by loss of SDH subunit C in muscle mitochondria, which is consistent with the pulmonary emphysema animal data. SDH knockout initially causes succinate accumulation associated with a down-regulated transcriptome but modest proteome effects. Muscle mass, myofiber type composition, and overall body mass constituents remain unaltered in the transgenic mice. Thus, while SDH regulates myofiber respiration in experimental pulmonary emphysema, it does not control muscle mass or other body constituents.
肺气肿患者存在骨骼肌质量和氧化能力降低的情况,且二者独立与更高的死亡率相关。如果在这种情况下,细胞呼吸减少确实会导致肌肉萎缩,目前尚不清楚。利用一种具有遗传性诱导的肺气肿的小鼠模型,我们发现琥珀酸脱氢酶(SDH)活性降低是其肌肉病变的特征之一。我们构建了一种可诱导的、肌肉特异性的 SDH 敲除小鼠,该小鼠表现出更低的线粒体耗氧量、肌纤维收缩性和运动耐力。呼吸计分析表明,体外复合物 I 呼吸不受肌肉线粒体中 SDH 亚基 C 缺失的影响,这与肺气肿动物数据一致。SDH 敲除最初导致琥珀酸积累,伴随着转录组下调,但对蛋白质组的影响较小。转基因小鼠的肌肉质量、肌纤维类型组成和整体身体成分组成均未改变。因此,虽然 SDH 在实验性肺气肿中调节肌纤维呼吸,但它不能控制肌肉质量或其他身体成分。