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Rosiglitazone Induces Mitochondrial Biogenesis in Differentiated Murine 3T3-L1 and C3H/10T1/2 Adipocytes

机译:罗格列酮诱导分化的小鼠3T3-L1和C3H / 10T1 / 2脂肪细胞中的线粒体生物发生。

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Growing evidence indicates that PPARγagonists, including rosiglitazone (RSG), induce adipose mitochondrial biogenesis. By systematically analyzing mitochondrial gene expression in two common murine adipocyte models, the current study aimed to further establish the direct role of RSG and capture temporal changes in gene transcription. Microarray profiling revealed that in fully differentiated 3T3-L1 and C3H/10T1/2 adipocytes treated with RSG or DMSO vehicle for 1, 2, 4, 7, 24, and 48 hrs, RSG overwhelmingly increased mitochondrial gene transcripts time dependently. The timing of the increases was consistent with the cascade of organelle biogenesis, that is, initiated by induction of transcription factor(s), followed by increases in the biosynthesis machinery, and then by increases in functional components. The transcriptional increases were further validated by increased mitochondrial staining, citrate synthase activity, and O2consumption, and were found to be associated with increased adiponectin secretion. The work provided further insight on the mechanism of PPARγ-induced mitochondrial biogenesis in differentiated adipocytes.
机译:越来越多的证据表明,包括罗格列酮(RSG)在内的PPARγ激动剂可诱导脂肪线粒体的生物发生。通过系统地分析两种常见的小鼠脂肪细胞模型中的线粒体基因表达,当前的研究旨在进一步确立RSG的直接作用并捕获基因转录的时间变化。微阵列分析表明,在用RSG或DMSO载体处理了1、2、4、7、24和48μhrs的完全分化的3T3-L1和C3H / 10T1 / 2脂肪细胞中,RSG压倒性地增加了线粒体基因转录物的时间依赖性。增加的时机与细胞器生物发生的级联一致,即由转录因子的诱导引发,接着是生物合成机制的增加,然后是功能成分的增加。转录的增加通过线粒体染色,柠檬酸合酶活性和O2消耗的增加得到进一步证实,并发现与脂联素分泌增加有关。这项工作提供了有关分化的脂肪细胞中PPARγ诱导线粒体生物发生机制的进一步见解。

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