首页> 美国卫生研究院文献>Journal of Lipid Research >Mice lacking Pctp /StarD2 exhibit increased adaptive thermogenesis and enlarged mitochondria in brown adipose tissue
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Mice lacking Pctp /StarD2 exhibit increased adaptive thermogenesis and enlarged mitochondria in brown adipose tissue

机译:缺乏Pctp / StarD2的小鼠在棕色脂肪组织中表现出增加的适应性生热作用和线粒体增大

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摘要

Pctp−/− mice that lack phosphatidylcholine transfer protein (Pctp) exhibit a marked shift toward utilization of fatty acids for oxidative phosphorylation, suggesting that Pctp may regulate the entry of fatty acyl-CoAs into mitochondria. Here, we examined the influence of Pctp expression on the function and structure of brown adipose tissue (BAT), a mitochondrial-rich, oxidative tissue that mediates nonshivering thermogenesis. Consistent with increased thermogenesis, Pctp−/− mice exhibited higher core body temperatures than wild-type controls at room temperature. During a 24 h cold challenge, Pctp−/− mice defended core body temperature efficiently enough that acute, full activation of BAT thermogenic genes did not occur. Brown adipocytes lacking Pctp harbored enlarged and elongated mitochondria. Consistent with increased fatty acid utilization, brown adipocytes cultured from Pctp−/− mice exhibited higher oxygen consumption rates in response to norepinephrine. The absence of Pctp expression during brown adipogenesis in vitro altered the expression of key transcription factors, which could be corrected by adenovirus-mediated overexpression of Pctp early but not late during the differentiation. Collectively, these findings support a key role for Pctp in limiting mitochondrial oxidation of fatty acids and thus regulating adaptive thermogenesis in BAT.
机译:缺少磷脂酰胆碱转移蛋白(Pctp)的Pctp -/-小鼠表现出明显的利用脂肪酸进行氧化磷酸化的趋势,这表明Pctp可能调节脂肪酰基辅酶A进入线粒体。在这里,我们检查了Pctp表达对棕色脂肪组织(BAT)的功能和结构的影响,该组织是一种线粒体富集的氧化性组织,介导无颤抖的生热作用。与生热增加一致,Pctp -// 小鼠在室温下显示出比野生型对照更高的核心体温。在24小时的寒冷挑战中,Pctp -/-小鼠有效地保护了核心体温,以至于不会发生急性,完全激活BAT生热基因的现象。缺乏Pctp的棕色脂肪细胞具有扩大和延长的线粒体。与增加的脂肪酸利用率一致,从Pctp -/-小鼠培养的棕色脂肪细胞对去甲肾上腺素有较高的耗氧率。体外棕色脂肪形成过程中Pctp表达的缺失改变了关键转录因子的表达,这可以通过腺病毒介导的Pctp的早期表达而在分化过程中晚期来纠正。总而言之,这些发现支持Pctp在限制脂肪酸的线粒体氧化从而调节BAT中适应性生热中的关键作用。

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