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CuZnSOD gene deletion targeted to skeletal muscle leads to loss of contractile force but does not cause muscle atrophy in adult mice

机译:针对骨骼肌的CuZnSOD基因缺失导致收缩力丧失但不会引起成年小鼠肌肉萎缩

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摘要

We have previously shown that deletion of CuZnSOD in mice (Sod1−/− mice) leads to accelerated loss of muscle mass and contractile force during aging. To dissect the relative roles of skeletal muscle and motor neurons in this process, we used a Cre-Lox targeted approach to establish a skeletal muscle-specific Sod1-knockout (mKO) mouse to determine whether muscle-specific CuZnSOD deletion is sufficient to cause muscle atrophy. Surprisingly, mKO mice maintain muscle masses at or above those of wild-type control mice up to 18 mo of age. In contrast, maximum isometric specific force measured in gastrocnemius muscle is significantly reduced in the mKO mice. We found no detectable increases in global measures of oxidative stress or ROS production, no reduction in mitochondrial ATP production, and no induction of adaptive stress responses in muscle from mKO mice. However, Akt-mTOR signaling is elevated and the number of muscle fibers with centrally located nuclei is increased in skeletal muscle from mKO mice, which suggests elevated regenerative pathways. Our data demonstrate that lack of CuZnSOD restricted to skeletal muscle does not lead to muscle atrophy but does cause muscle weakness in adult mice and suggest loss of CuZnSOD may potentiate muscle regenerative pathways.—Zhang, Y., Davis, C., Sakellariou, G.K., Shi, Y., Kayani, A.C., Pulliam, D., Bhattacharya, A., Richardson, A., Jackson, M.J., McArdle, A., Brooks, S.V., Van Remmen, H. CuZnSOD gene deletion targeted to skeletal muscle leads to loss of contractile force but does not cause muscle atrophy in adult mice.
机译:以前我们已经表明,在小鼠(Sod1 -/-小鼠)中删除CuZnSOD会导致衰老过程中肌肉质量的加速损失和收缩力。为了剖析骨骼肌和运动神经元在此过程中的相对作用,我们使用了Cre-Lox靶向方法建立骨骼肌特异性Sod1基因敲除(mKO)小鼠,以确定肌肉特异性CuZnSOD缺失是否足以引起肌肉萎缩。出人意料的是,mKO小鼠的肌肉量维持在野生型对照小鼠的肌肉量或更高,直至18 mo。相反,在mKO小鼠中,腓肠肌中测得的最大等距比力显着降低。我们发现在氧化应激或ROS产生的整体测量中没有可检测到的增加,线粒体ATP产生没有减少,并且从mKO小鼠的肌肉中没有诱导出适应性应激反应。但是,mkt小鼠的骨骼肌中Akt-mTOR信号转导增加,且具有居中位置的核的肌纤维数目增加,这表明再生途径增加。我们的数据表明,缺乏限于骨骼肌的CuZnSOD不会导致肌肉萎缩,但会导致成年小鼠的肌肉无力,这表明CuZnSOD的丧失可能会增强肌肉的再生途径。—Zhang,Y.,Davis,C.,Sakellariou,GK ,Shi,Y.,Kayani,AC,Pulliam,D.,Bhattacharya,A.,Richardson,A.,Jackson,MJ,McArdle,A.,Brooks,SV,Van Remmen,H.针对骨骼肌的CuZnSOD基因缺失导致收缩力丧失,但不会引起成年小鼠肌肉萎缩。

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