首页> 美国卫生研究院文献>Journal of Lipid Research >NT-PGC-1α deficiency decreases mitochondrial FA oxidation in brown adipose tissue and alters substrate utilization in vivo
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NT-PGC-1α deficiency decreases mitochondrial FA oxidation in brown adipose tissue and alters substrate utilization in vivo

机译:NT-PGC-1α缺乏会降低棕色脂肪组织中的线粒体FA氧化并改变体内的底物利用率

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摘要

Transcriptional coactivator PPAR γ coactivator (PGC)-1α and its splice variant N-terminal (NT)-PGC-1α mediate transcriptional regulation of brown adipose tissue (BAT) thermogenesis in response to changes in ambient temperature. PGC-1α is dispensable for cold-induced BAT thermogenesis as long as NT-PGC-1α is present. However, the functional significance of NT-PGC-1α in BAT has not been determined. In the present study, we generated NT-PGC-1α−/− mice to investigate the effect of NT-PGC-1α deficiency on adaptive BAT thermogenesis. At thermoneutrality, NT-PGC-1α−/− mice exhibited abnormal BAT phenotype with increased accumulation of large lipid droplets concomitant with marked downregulation of FA oxidation (FAO)-related genes. Consistent with transcriptional changes, mitochondrial FAO was significantly diminished in NT-PGC-1α−/− BAT. This alteration, in turn, enhanced glucose utilization within the NT-PGC-1α−/− BAT mitochondria. In line with this, NT-PGC-1α−/− mice had higher reliance on carbohydrates. In response to cold or β3-adrenergic receptor agonist, NT-PGC-1α−/− mice transiently exhibited lower thermogenesis but reached similar thermogenic capacities as their WT littermates. Collectively, these findings demonstrate that NT-PGC-1α is an important contributor to the maintenance of FAO capacity in BAT at thermoneutrality and provide deeper insights into the relative contributions of PGC-1α and NT-PGC-1α to temperature-regulated BAT remodeling.
机译:转录共激活因子PPARγ共激活因子(PGC)-1α及其剪接变体N端(NT)-PGC-1α响应环境温度的变化介导棕色脂肪组织(BAT)生热的转录调控。只要存在NT-PGC-1α,PGC-1α就可用于冷诱导的BAT热生成。但是,尚未确定NT-PGC-1α在BAT中的功能意义。在本研究中,我们生成了NT-PGC-1α-/-小鼠,以研究NT-PGC-1α缺乏对自适应BAT生热的影响。在热中性时,NT-PGC-1α-/-小鼠表现出异常的BAT表型,大脂质滴的积累增加,并伴随着FA氧化(FAO)相关基因的显着下调。与转录变化一致,线粒体FAO在NT-PGC-1α-/- BAT中显着减少。这种改变进而提高了NT-PGC-1α-/- BAT线粒体内的葡萄糖利用率。与此相应,NT-PGC-1α-/-小鼠对碳水化合物的依赖性更高。 NT-PGC-1α-/-小鼠在响应寒冷或β3-肾上腺素受体激动剂时,短暂表现出较低的生热能力,但其热生成能力与野生型同窝仔小鼠相似。总而言之,这些发现表明NT-PGC-1α是维持粮农组织在热中性条件下BAT的能力的重要贡献,并为PGC-1α和NT-PGC-1α对温度调节的BAT重塑的相对贡献提供了更深刻的见解。

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