Veneto Institute of Molecular Medicine, via Orus 2, 35129 Padua, Italy.
Department of Biomedical Science, University of Padua, via G. Colombo 3, 35100 Padua, Italy.
Cells. 2019 Jun 15;8(6):597. doi: 10.3390/cells8060597.
The maintenance of muscle mass and its ability to function relies on a bioenergetic efficient mitochondrial network. This network is highly impacted by fusion and fission events. We have recently shown that the acute deletion of the fusion protein Opa1 induces muscle atrophy, systemic inflammatory response, precocious epithelial senescence, and premature death that are caused by muscle-dependent secretion of FGF21. However, both fusion and fission machinery are suppressed in aging sarcopenia, cancer cachexia, and chemotherapy-induced muscle wasting. We generated inducible muscle-specific Opa1 and Drp1 double-knockout mice to address the physiological relevance of the concomitant impairment of fusion and fission machinery in skeletal muscle. Here we show that acute ablation of Opa1 and Drp1 in adult muscle causes the accumulation of abnormal and dysfunctional mitochondria, as well as the inhibition of autophagy and mitophagy pathways. This ultimately results in ER stress, muscle loss, and the reduction of force generation. However, the simultaneous inhibition of the fission protein Drp1 when Opa1 is absent alleviates FGF21 induction, oxidative stress, denervation, and inflammation rescuing the lethal phenotype of Opa1 knockout mice, despite the presence of any muscle weakness. Thus, the simultaneous inhibition of fusion and fission processes mitigates the detrimental effects of unbalanced mitochondrial fusion and prevents the secretion of pro-senescence factors.
肌肉质量的维持及其功能的发挥依赖于具有生物能量效率的线粒体网络。这个网络高度依赖融合和裂变事件。我们最近发现,融合蛋白 Opa1 的急性缺失会导致肌肉萎缩、全身炎症反应、上皮过早衰老和由肌肉依赖性 FGF21 分泌引起的过早死亡。然而,在衰老性肌肉减少症、癌症恶病质和化疗引起的肌肉消耗中,融合和裂变机制都受到抑制。我们生成了可诱导的肌肉特异性 Opa1 和 Drp1 双重敲除小鼠,以研究融合和裂变机制同时受损在骨骼肌中的生理相关性。在这里,我们表明,在成年肌肉中急性消融 Opa1 和 Drp1 会导致异常和功能失调的线粒体积累,以及自噬和线粒体自噬途径的抑制。这最终导致内质网应激、肌肉损失和力量产生减少。然而,当 Opa1 缺失时,同时抑制裂变蛋白 Drp1 可以减轻 FGF21 的诱导、氧化应激、去神经和炎症,挽救 Opa1 敲除小鼠的致死表型,尽管存在任何肌肉无力。因此,同时抑制融合和裂变过程可以减轻不平衡的线粒体融合的有害影响,并防止衰老前因子的分泌。