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Intestinal PPARγ signalling is required for sympathetic nervous system activation in response to caloric restriction.

机译:肠道PPARγ信号传导是响应热量限制而激活交感神经系统所必需的。

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摘要

Nuclear receptor PPARγ has been proven to affect metabolism in multiple tissues, and has received considerable attention for its involvement in colon cancer and inflammatory disease. However, its role in intestinal metabolism has been largely ignored. To investigate this potential aspect of PPARγ function, we submitted intestinal epithelium-specific PPARγ knockout mice (iePPARγKO) to a two-week period of 25% caloric restriction (CR), following which iePPARγKO mice retained more fat than their wild type littermates. In attempting to explain this discrepancy, we analysed the liver, skeletal muscle, intestinal lipid trafficking, and the microbiome, none of which appeared to contribute to the adiposity phenotype. Interestingly, under conditions of CR, iePPARγKO mice failed to activate their sympathetic nervous system (SNS) and increase CR-specific locomotor activity. These KO mice also manifested a defective control of their body temperature, which was overly reduced. Furthermore, the white adipose tissue of iePPARγKO CR mice showed lower levels of both hormone-sensitive lipase, and its phosphorylated form. This would result from impaired SNS signalling and possibly cause reduced lipolysis. We conclude that intestinal epithelium PPARγ plays an essential role in increasing SNS activity under CR conditions, thereby contributing to energy mobilization during metabolically stressful episodes.
机译:核受体PPARγ已被证明会影响多种组织的代谢,并因其参与结肠癌和炎症性疾病而受到广泛关注。然而,其在肠道代谢中的作用已被大大忽略。为了研究PPARγ功能的这一潜在方面,我们将肠道上皮特异性PPARγ基因敲除小鼠(即PPARγKO)接受了为期两周的25%热量限制(CR),此后,即PPARγKO小鼠比野生型同窝小鼠保留了更多的脂肪。在试图解释这种差异时,我们分析了肝脏,骨骼肌,肠道脂质运输和微生物组,这些微生物似乎都不对肥胖表型有所贡献。有趣的是,在CR的条件下,即PPARγKO小鼠未能激活其交感神经系统(SNS)并增加CR的自发活动。这些KO小鼠还表现出对体温控制的缺陷,这被过度降低。此外,iePPARγKOCR小鼠的白色脂肪组织显示出较低水平的激素敏感性脂肪酶及其磷酸化形式。这可能是由于SNS信号传导受损所致,并可能导致脂解减少。我们得出结论,在CR条件下,肠上皮PPARγ在增加SNS活性中起着重要作用,从而在代谢应激发作期间有助于能量动员。

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