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S6 激酶 2 缺乏增强酮体生成并增加肝脏中过氧化物酶体增殖物激活受体α的活性。

S6 kinase 2 deficiency enhances ketone body production and increases peroxisome proliferator-activated receptor alpha activity in the liver.

机构信息

Department of Molecular Cell Biology, Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon, Korea.

出版信息

Hepatology. 2012 Jun;55(6):1727-37. doi: 10.1002/hep.25537. Epub 2012 Mar 8.

Abstract

UNLABELLED

Nutrient homeostasis is tightly regulated by the balance between energy production and utilization. During fasting, production of ketone bodies as an alternative energy source is critical to maintain nutrient homeostasis. An important component in the nutrient-sensitive signaling pathway is S6 kinase 2 (S6K2), a downstream effector of mammalian target of rapamycin. Here, we show that mice lacking S6K2 exhibit elevated levels of ketone bodies and enhanced peroxisome proliferator-activated receptor alpha (PPARα) activity upon nutrient availability. Consistent with this, knockdown of S6K2 increases the transcriptional activity of PPARα. S6K2 suppresses PPARα by associating with its corepressor, nuclear receptor corepressor 1 (NCoR1), and by inducing the recruitment of NCoR1 to the nucleus. Moreover, ob/ob mice, a genetic model of obesity, have markedly elevated S6K2 activity, and S6K2 was strongly associated with NCoR1 in the nucleus of liver cells.

CONCLUSION

Our findings suggest that S6K2 regulates hepatic energy homeostasis by repressing PPARα activity and point to its potential relevance for therapeutic strategies designed to modulate S6K2 activity as a treatment for deregulated ketone body production.

摘要

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营养物动态平衡由能量产生和利用之间的平衡严格调控。在禁食期间,酮体作为替代能源的产生对于维持营养物动态平衡至关重要。营养敏感信号通路中的一个重要组成部分是 S6 激酶 2(S6K2),它是哺乳动物雷帕霉素靶蛋白的下游效应物。在这里,我们表明缺乏 S6K2 的小鼠在营养物质可用时表现出酮体水平升高和过氧化物酶体增殖物激活受体 α(PPARα)活性增强。与此一致的是,S6K2 的敲低增加了 PPARα 的转录活性。S6K2 通过与核受体共抑制因子 1(NCoR1)结合及其诱导 NCoR1 向核内募集来抑制 PPARα。此外,ob/ob 小鼠是肥胖的遗传模型,其 S6K2 活性明显升高,并且 S6K2 在肝细胞核中与 NCoR1 强烈相关。

结论

我们的发现表明 S6K2 通过抑制 PPARα 活性来调节肝能量动态平衡,并指出其作为调节 S6K2 活性的治疗策略的潜在相关性,以作为治疗酮体产生失调的方法。

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