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Cyclophilin-D is dispensable for atrophy and mitochondrial apoptotic signalling in denervated muscle

机译:Cyclophilin-D对于失神经肌肉萎缩和线粒体凋亡信号是必不可少的

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摘要

In the present study, we specifically determined whether the regulatory protein cyclophilin-D (CypD), and by extension opening of the permeability transition pore (PTP), is involved in the activation of mitochondria-derived apoptotic signalling previously described in skeletal muscle following loss of innervation. For this purpose, CypD-defficient (CypD-KO) mice and their littermate controls were submitted to unilateral sciatic nerve transection, and mitochondrial resistance to Ca2+-induced opening of the PTP, and muscle apoptotic signalling were investigated 14 days post-surgery. Denervation caused atrophy, facilitated Ca2+-induced opening of the PTP in vitro in permeabilized muscle fibres, and activation of the apoptotic proteolytic cascade in the whole muscle of both mouse strains. In CypD-KO mice, mitochondrial resistance to Ca2+-induced PTP opening was greater than in WT mice, in both the normal and the denervated state, indicating that lack of CypD desensitized to PTP opening. However, denervation in CypD-KO mice still resulted in a facilitation of PTP opening compared to normally innervated contralateral muscle, indicating that in vitro additional factors could poise mitochondria from denervated muscle toward PTP opening. At the whole muscle level, lack of CypD, despite conferring greater resistance to PTP opening, did not protect against atrophy, release of mitochondrial pro-apoptotic factors and activation of caspases following denervation. Altogether, these results provide direct evidence that CypD-dependent PTP opening is dispensable for atrophy and apoptotic signalling in skeletal muscle following denervation.
机译:在本研究中,我们专门确定调节蛋白亲环蛋白-D(CypD)和通透性过渡孔(PTP)的扩展开放是否参与了先前描述的线粒体源性凋亡信号在丢失后骨骼肌中的活化。的神经。为此,将CypD缺陷(CypD-KO)小鼠及其同窝对照进行单侧坐骨神经横切,并在手术后14天调查了线粒体对Ca2 +诱导的PTP开放和肌肉凋亡信号的抵抗力。去神经引起萎缩,促进Ca2 +诱导的体外渗透性肌肉纤维中PTP的打开,并激活两种小鼠品系的整个肌肉中的凋亡蛋白水解级联反应。在CypD-KO小鼠中,正常和失神经状态下,线粒体对Ca2 +诱导的PTP开放的抵抗力都比WT小鼠大,这表明缺乏CypD对PTP开放不敏感。然而,与正常神经支配的对侧肌肉相比,CypD-KO小鼠的神经支配仍然促进了PTP的开放,这表明体外其他因素可能会使神经支配的线粒体从神经支配的肌肉向PTP开放。在整个肌肉水平上,尽管CypD缺乏,尽管赋予了PTP开放更大的抵抗力,但并未防止萎缩,线粒体促凋亡因子的释放以及神经支配后胱天蛋白酶的活化。总而言之,这些结果提供了直接的证据,表明神经支配后,依赖于CypD的PTP开放对于骨骼肌中的萎缩和凋亡信号传导是必不可少的。

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