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Muscle denervation promotes opening of the permeability transition pore and increases the expression of cyclophilin D

机译:肌肉去神经促进通透性过渡孔的开放并增加亲环蛋白D的表达

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摘要

Loss of neural input to skeletal muscle fibres induces atrophy and degeneration with evidence of mitochondria-mediated cell death. However, the effect of denervation on the permeability transition pore (PTP), a mitochondrial protein complex implicated in cell death, is uncertain. In the present study, the impact of 21 days of denervation on the sensitivity of the PTP to Ca2+-induced opening was studied in isolated muscle mitochondria. Muscle denervation increased the sensitivity to Ca2+-induced opening of the PTP, as indicated by a significant decrease in calcium retention capacity (CRC: 111 ± 12 versus 475 ± 33 nmol (mg protein)1 for denervated and sham, respectively). This phenomenon was partly attributable to in vivo mitochondrial and whole muscle Ca2+ overload. Cyclosporin A, which inhibits PTP opening by binding to cyclophilin D (CypD), was significantly more potent in mitochondria from denervated muscle and restored CRC to the level observed in mitochondria from sham-operated muscles. In contrast, the CypD independent inhibitor trifluoperazine was equally effective at inhibiting PTP opening in sham and denervated animals and did not correct the difference in CRC between groups. This phenomenon was associated with a significant increase in the content of the PTP regulating protein CypD relative to several mitochondrial marker proteins. Together, these results indicate that Ca2+ overload in vivo and an altered expression of CypD could predispose mitochondria to permeability transition in denervated muscles.
机译:具有线粒体介导的细胞死亡的证据表明,骨骼肌纤维神经输入的丧失会引起萎缩和变性。然而,去神经化对通透性过渡孔(PTP)的影响尚不确定,PTP是一种与细胞死亡有关的线粒体蛋白复合物。在本研究中,研究了在分离的肌肉线粒体中去神经21天对PTP对Ca 2 + 诱导的开放敏感性的影响。肌肉去神经支配增加了对Ca 2 + 诱导的PTP开放的敏感性,这表现为钙保留能力显着降低(CRC:111±12 vs 475±33 nmol(mg蛋白) 1 分别表示去神经和假)。这种现象部分归因于体内线粒体和全肌Ca 2 + 超载。环孢菌素A通过与亲环蛋白D(CypD)结合来抑制PTP的开放,在神经支配的肌肉线粒体中具有更强的效力,而从假手术的肌肉中恢复到线粒体中的CRC水平。相反,CypD独立抑制剂三氟拉嗪在抑制假手术和失神经的动物中PTP开放方面同样有效,并且不能纠正两组之间CRC的差异。相对于几种线粒体标记蛋白,这种现象与PTP调节蛋白CypD含量的显着增加有关。在一起,这些结果表明体内Ca 2 + 超负荷和CypD表达的改变可能使线粒体在神经支配的肌肉中易于渗透性转变。

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