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首页> 外文期刊>Molecular Neurobiology >Bezafibrate Upregulates Mitochondrial Biogenesis and Influence Neural Differentiation of Human-Induced Pluripotent Stem Cells
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Bezafibrate Upregulates Mitochondrial Biogenesis and Influence Neural Differentiation of Human-Induced Pluripotent Stem Cells

机译:Bezafibrate上调线粒体生物发生,影响人诱导的多能干细胞的神经分化

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Bezafibrate (BZ) regulates mitochondrial biogenesis by activation of PPAR's receptors and enhancing the level of PGC-1 coactivator. In this report, we investigated the effect of BZ on the expression of genes (1) that are linked to different pathways involved in mitochondrial biogenesis, e.g., regulated by PPAR's receptors or PGC-1 coactivator, and (2) involved in neuronal or astroglial fate, during neural differentiation of hiPSC. The tested cell populations included hiPSC-derived neural stem cells (NSC), early neural progenitors (eNP), and neural progenitors (NP). RNA-seq analysis showed the expression of PPARA, PPARD receptors and excluded PPARG in all tested populations. The expression of PPARGC1A encoding PGC-1 was dependent on the stage of differentiation: NSC, eNP, and NP differed significantly as compared to hiPSC. In addition, BZ-evoked upregulation of PPARGC1A, GFAP, S100B, and DCX genes coexist with downregulation of MAP2 gene only at the eNP stage of differentiation. In the second task, we investigated the cell sensitivity and mitochondrial biogenesis upon BZ treatment. BZ influenced the cell viability, ROS level, mitochondrial membrane potential, and total cell number in concentration- and stage of differentiation-dependent manner. Induction of mitochondrial biogenesis evoked by BZ determined by the changes in the level of SDHA and COX-1 protein, and mtDNA copy number, as well as the expression of NRF1, PPARGC1A, and TFAM genes, was detected only at NP stage for all tested markers. Thus, developmental stage-specific sensitivity to BZ of neurally differentiating hiPSC can be linked to mitochondrial biogenesis, while fate commitment decisions to PGC-1 (encoded by PPARGC1A) pathway.
机译:Bezafbibrate(BZ)通过激活PPAR的受体并增强PGC-1共粘膜剂的水平来调节线粒体生物组织。在本报告中,我们研究了BZ对与线粒体生物发生的不同途径的基因(1)的表达的影响,例如由PPAR的受体或PGC-1共粘膜调节,以及(2)参与神经元或晕虫在HIPSC神经分化期间的命运。测试的细胞群包括HIPSC衍生的神经干细胞(NSC),早期神经祖细胞(ENP)和神经祖细胞(NP)。 RNA-SEQ分析显示PPARA,PPART受体的表达,并在所有测试群体中排除了PPARG。 PPARGC1A编码PGC-1的表达取决于分化的阶段:与HIPSC相比,NSC,ENP和NP显着不同。此外,BZCC1A,GFAP,S100B和DCX基因的BZ诱发上调仅在分化的ENP阶段与MAP2基因的下调共存。在第二任务中,我们研究了BZ治疗的细胞敏感性和线粒体生物发生。 BZ影响了细胞活力,ROS水平,线粒体膜电位和分化依赖性方式的浓度和阶段的总细胞数。通过SDHA和COX-1蛋白水平的变化和MTDNA拷贝数以及NRF1,PPARGC1A和TFAM基因的表达诱导的BZ诱导的线粒体生物发生的诱导仅在NP阶段进行所有测试标记。因此,对神经分化的HIPSC的BZ的发育阶段特异性敏感性可以与线粒体生物发生联系,同时命运对PGC-1的承诺决定(由PPARGC1A编码)途径。

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