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Mitochondrial adaptations in skeletal muscle to hindlimb unloading

机译:骨骼肌线粒体适应后肢卸载

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摘要

To gain insight into the regulation of mitochondrial adaptations to hindlimb unloading (HU), the activity of mitochondrial enzymes and the expression of nuclear-encoded genes which control mitochondrial properties in mouse gastrocnemius muscle were investigated. Biochemical and enzyme histochemical analysis showed that subsarcolemmal mitochondria were lost largely than intermyofibrillar mitochondria after HU. Gene expression analysis revealed disturbed or diminished gene expression patterns. The three main results of this analysis are as follows. First, in contrast to peroxisome proliferator-activated receptor γ coactivator 1 β (PGC-1β) and PGC-1-related coactivator, which were down-regulated by HU, PGC-1α was up-regulated concomitant with decreased expression of its DNA binding transcription factors, PPARα, and estrogen-related receptor α (ERRα). Moreover, there was no alteration in expression of nuclear respiratory factor 1, but its downstream target gene, mitochondrial transcription factor A, was down-regulated. Second, both mitofusin 2 and fission 1, which control mitochondrial morphology, were down-regulated. Third, ATP-dependent Lon protease, which participates in mitochondrial-protein degradation, was also down-regulated. These findings suggest that HU may induce uncoordinated expression of PGC-1 family coactivators and DNA binding transcription factors, resulting in reducing ability of mitochondrial biogenesis. Furthermore, down-regulation of mitochondrial morphology-related genes associated with HU may be also involved in alterations in intracellular mitochondrial distribution.
机译:为了深入了解线粒体适应后肢卸载(HU)的调控,研究了线粒体酶的活性以及控制小鼠腓肠肌线粒体特性的核编码基因的表达。生化和酶组织化学分析表明,HU后肌膜下线粒体的损​​失比肌原纤维间线粒体的损​​失大。基因表达分析揭示了受干扰或减弱的基因表达模式。该分析的三个主要结果如下。首先,与过氧化物酶体增殖物激活的受体γ共激活因子1β(PGC-1β)和PGC-1相关的共激活因子被HU下调相反,PGC-1α被上调同时其DNA结合表达降低转录因子,PPARα和雌激素相关受体α(ERRα)。而且,核呼吸因子1的表达没有改变,但其下游靶基因线粒体转录因子A被下调。其次,控制线粒体形态的线粒体2和裂变1均被下调。第三,参与线粒体蛋白质降解的ATP依赖型Lon蛋白酶也被下调。这些发现表明,HU可能诱导PGC-1家族共激活因子和DNA结合转录因子的不协调表达,从而导致线粒体生物发生能力降低。此外,与HU相关的线粒体形态相关基因的下调也可能参与细胞内线粒体分布的变化。

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