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Restoration of SERCA ATPase prevents oxidative stress-related muscle atrophy and weakness

机译:SERCA ATPase的恢复可预防与氧化应激相关的肌肉萎缩和无力

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Molecular targets to reduce muscle weakness and atrophy due to oxidative stress have been elusive. Here we show that activation of Sarcoplasmic Reticulum (SR) Ca2+ ATPase (SERCA) with CDN1163, a novel small molecule allosteric SERCA activator, ameliorates the muscle impairment in the CuZnSOD deficient ( Sod1 -/- ) mouse model of oxidative stress. Sod1 -/- mice are characterized by reduced SERCA activity, muscle weakness and atrophy, increased oxidative stress and mitochondrial dysfunction. Seven weeks of CDN1163 treatment completely restored SERCA activity and reversed the 23% reduction in gastrocnemius mass and 22% reduction in specific force in untreated Sod1 -/- versus wild type mice. These changes were accompanied by restoration of autophagy protein markers to the levels found in wild-type mice. CDN1163 also reversed the increase in mitochondrial ROS generation and oxidative damage in muscle tissue from Sod1 -/- mice. Taken together our findings suggest that the pharmacological restoration of SERCA is a promising therapeutic approach to counter oxidative stress-associated muscle impairment.
机译:减轻因氧化应激而导致的肌肉无力和萎缩的分子靶标一直难以捉摸。在这里,我们显示了使用新型小分子变构SERCA激活剂CDN1163激活肌质网(SR)Ca 2 + ATPase(SERCA),可改善CuZnSOD缺陷(Sod1 - /-)氧化应激的小鼠模型。 Sod1 -/-小鼠的特征是SERCA活性降低,肌肉无力和萎缩,氧化应激增加和线粒体功能障碍。与野生型小鼠相比,未经治疗的Sod1 -/-小鼠经过7周的CDN1163处理后,可完全恢复SERCA活性,并逆转了腓肠肌重量减少23%和比力减少22%。这些变化伴随着自噬蛋白标记物恢复至野生型小鼠体内的水平。 CDN1163还逆转了Sod1 -/-小鼠的线粒体ROS生成和肌肉组织氧化损伤的增加。综上所述,我们的发现表明,SERCA的药理学修复是一种有前景的抗氧化应激相关性肌肉损伤的治疗方法。

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