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The Mitochondrial Calcium Uniporter Controls Skeletal Muscle Trophism In Vivo

机译:线粒体钙单向转运蛋白可体内控制骨骼肌营养。

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Muscle atrophy contributes to the poor prognosis of many pathophysiological conditions, but pharmacological therapies are still limited. Muscle activity leads to major swings in mitochondrial [Ca^2^+], which control aerobic metabolism, cell death, and survival pathways. We investigated in vivo the effects of mitochondrial Ca^2^+ homeostasis in skeletal muscle function and trophism by overexpressing or silencing the mitochondrial calcium uniporter (MCU). The results demonstrate that in both developing and adult muscles, MCU-dependent mitochondrial Ca^2^+ uptake has a marked trophic effect that does not depend on aerobic control but impinges on two major hypertrophic pathways of skeletal muscle, PGC-1@a4 and IGF1-Akt/PKB. In addition, MCU overexpression protects from denervation-induced atrophy. These data reveal a novel Ca^2^+-dependent organelle-to-nucleus signaling route that links mitochondrial function to the control of muscle mass and may represent a possible pharmacological target in conditions of muscle loss.
机译:肌肉萎缩导致许多病理生理状况的不良预后,但药物治疗仍然有限。肌肉活动导致线粒体[Ca ^ 2 ^ +]发生重大波动,从而控制有氧代谢,细胞死亡和生存途径。我们通过过表达或沉默线粒体钙单向转运蛋白(MCU),体内研究了线粒体Ca ^ 2 ^ +动态平衡对骨骼肌功能和营养的影响。结果表明,在发育中和成年肌肉中,MCU依赖的线粒体Ca ^ 2 ^ +摄取均具有显着的营养作用,其不依赖于有氧控制,但会影响骨骼肌的两个主要肥大途径,PGC-1 @ a4和IGF1-Akt / PKB。此外,MCU过表达可防止神经支配引起的萎缩。这些数据揭示了新颖的Ca 2+依赖性细胞器-细胞核信号转导途径,其将线粒体功能与肌肉质量控制联系起来,并且可能代表肌肉丧失情况下可能的药理学靶标。

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