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首页> 外文期刊>American Journal of Physiology >Altered mitochondrial morphology and defective protein import reveal novel roles for Bax and/or Bak in skeletal muscle
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Altered mitochondrial morphology and defective protein import reveal novel roles for Bax and/or Bak in skeletal muscle

机译:线粒体形态的改变和蛋白质进口的缺陷揭示了Bax和/或Bak在骨骼肌中的新作用

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摘要

The function Bax and/or Bak in constituting a gateway for mitochondrial apoptosis in response to apoptotic stimuli has been unequivocally demonstrated. However, recent work has suggested that Bax/Bak may have unrecognized nonapoptotic functions related to mitochondrial function in nonstress-ful environments. Wild-type (WT) and Bax/Bak double knockout (DKO) mice were used to determine alternative roles for Bax and Bak in mitochondrial morphology and protein import in skeletal muscle. The absence of Bax and/or Bak altered mitochondrial dynamics by regulating protein components of the organelle fission and fusion machinery. Moreover, DKO mice exhibited defective mitochondrial protein import, both into the matrix and outer membrane compartments, which was consistent with our observations of impaired membrane potential and attenuated expression of protein import machinery (PIM) components in intermyofibrillar mitochondria. Furthermore, the cytosolic chaperones heat-shock protein 90 (Hsp90) and binding immunoglobulin protein (BiP) were markedly increased with the deletion of Bax/Bak, indicating that the cytosolic environment related to protein folding may be changed in DKO mice. Interestingly, endurance training fully restored the deficiency of protein import in DKO mice, likely via the upregulation of PIM components and through improved cytosolic chaperone protein expression. Thus our results emphasize novel roles for Bax and/or Bak in mitochondrial function and provide evidence, for the first time, of a curative function of exercise training in ameliorating a condition of defective mitochondrial protein import.
机译:明确证明了Bax和/或Bak在构成针对凋亡刺激的线粒体凋亡通路中的功能。但是,最近的研究表明,Bax / Bak在非应激环境中可能具有与线粒体功能相关的无法识别的非凋亡功能。野生型(WT)和Bax / Bak双敲除(DKO)小鼠用于确定Bax和Bak在线粒体形态和骨骼肌中蛋白质输入中的替代作用。 Bax和/或Bak的缺失通过调节细胞器裂变和融合机制的蛋白质成分改变了线粒体动力学。此外,DKO小鼠在基质和外膜区室均显示出缺陷的线粒体蛋白导入,这与我们观察到的肌原纤维间线粒体膜电位受损和蛋白导入机制(PIM)成分表达减弱的观察一致。此外,胞质伴侣热休克蛋白90(Hsp90)和结合免疫球蛋白蛋白(BiP)随着Bax / Bak的缺失而显着增加,表明与蛋白折叠有关的胞质环境可能在DKO小鼠中发生了改变。有趣的是,耐力训练完全可以通过上调PIM成分和改善胞质伴侣蛋白的表达来恢复DKO小鼠蛋白质输入的不足。因此,我们的研究结果强调了Bax和/或Bak在线粒体功能中的新作用,并首次证明了运动训练在改善线粒体蛋白质输入缺陷情况中的疗效。

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