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Loss of BIM increases mitochondrial oxygen consumption and lipid oxidation reduces adiposity and improves insulin sensitivity in mice

机译:BIM的损失增加了线粒体的耗氧量和脂质氧化降低了肥胖并改善了小鼠的胰岛素敏感性

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摘要

BCL-2 proteins are known to engage each other to determine the fate of a cell after a death stimulus. However, their evolutionary conservation and the many other reported binding partners suggest an additional function not directly linked to apoptosis regulation. To identify such a function, we studied mice lacking the BH3-only protein BIM. BIM−/− cells had a higher mitochondrial oxygen consumption rate that was associated with higher mitochondrial complex IV activity. The consequences of increased oxygen consumption in BIM−/− mice were significantly lower body weights, reduced adiposity and lower hepatic lipid content. Consistent with reduced adiposity, BIM−/− mice had lower fasting blood glucose, improved insulin sensitivity and hepatic insulin signalling. Lipid oxidation was increased in BIM−/− mice, suggesting a mechanism for their metabolic phenotype. Our data suggest a role for BIM in regulating mitochondrial bioenergetics and metabolism and support the idea that regulation of metabolism and cell death are connected.
机译:已知BCL-2蛋白在死亡刺激后会相互接合,以确定细胞的命运。然而,它们的进化保守性和许多其他报道的结合伴侣提示了与细胞凋亡调控不直接相关的附加功能。为了确定这种功能,我们研究了缺少仅BH3蛋白BIM的小鼠。 BIM -/-细胞具有较高的线粒体耗氧率,这与较高的线粒体复合物IV活性有关。 BIM -/-小鼠中耗氧量增加的后果是体重明显降低,脂肪减少和肝脂质含量降低。与减少肥胖症相一致,BIM -/-小鼠的空腹血糖较低,胰岛素敏感性和肝胰岛素信号增强。 BIM -/-小鼠的脂质氧化增加,提示其代谢表型的机制。我们的数据表明BIM在调节线粒体生物能和代谢中的作用,并支持将代谢和细胞死亡的调节联系在一起的观点。

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