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抑制中枢黑皮质素系统会降低棕色脂肪组织的活性。

Inhibition of the central melanocortin system decreases brown adipose tissue activity.

作者信息

Kooijman Sander, Boon Mariëtte R, Parlevliet Edwin T, Geerling Janine J, van de Pol Vera, Romijn Johannes A, Havekes Louis M, Meurs Illiana, Rensen Patrick C N

机构信息

Department of Endocrinology and Metabolic Diseases, Leiden University Medical Center, Leiden, The Netherlands Einthoven Laboratory for Experimental Vascular Medicine, Leiden University Medical Center, Leiden, The Netherlands.

Department of Endocrinology and Metabolic Diseases, Leiden University Medical Center, Leiden, The Netherlands Einthoven Laboratory for Experimental Vascular Medicine, Leiden University Medical Center, Leiden, The Netherlands Department of Internal Medicine, Academic Medical Center, University of Amsterdam, The Netherlands.

出版信息

J Lipid Res. 2014 Oct;55(10):2022-32. doi: 10.1194/jlr.M045989. Epub 2014 Jul 12.

Abstract

The melanocortin system is an important regulator of energy balance, and melanocortin 4 receptor (MC4R) deficiency is the most common monogenic cause of obesity. We investigated whether the relationship between melanocortin system activity and energy expenditure (EE) is mediated by brown adipose tissue (BAT) activity. Therefore, female APOE3-Leiden.CETP transgenic mice were fed a Western-type diet for 4 weeks and infused intracerebroventricularly with the melanocortin 3/4 receptor (MC3/4R) antagonist SHU9119 or vehicle for 2 weeks. SHU9119 increased food intake (+30%) and body fat (+50%) and decreased EE by reduction in fat oxidation (-42%). In addition, SHU9119 impaired the uptake of VLDL-TG by BAT. In line with this, SHU9119 decreased uncoupling protein-1 levels in BAT (-60%) and induced large intracellular lipid droplets, indicative of severely disturbed BAT activity. Finally, SHU9119-treated mice pair-fed to the vehicle-treated group still exhibited these effects, indicating that MC4R inhibition impairs BAT activity independent of food intake. These effects were not specific to the APOE3-Leiden.CETP background as SHU9119 also inhibited BAT activity in wild-type mice. We conclude that inhibition of central MC3/4R signaling impairs BAT function, which is accompanied by reduced EE, thereby promoting adiposity. We anticipate that activation of MC4R is a promising strategy to combat obesity by increasing BAT activity.

摘要

黑皮质素系统是能量平衡的重要调节因子,而黑皮质素4受体(MC4R)缺乏是肥胖最常见的单基因病因。我们研究了黑皮质素系统活性与能量消耗(EE)之间的关系是否由棕色脂肪组织(BAT)活性介导。因此,给雌性APOE3 - Leiden.CETP转基因小鼠喂食西式饮食4周,并脑室内注射黑皮质素3/4受体(MC3/4R)拮抗剂SHU9119或溶剂2周。SHU9119增加了食物摄入量(+30%)和体脂(+50%),并通过减少脂肪氧化(-42%)降低了EE。此外,SHU9119损害了BAT对极低密度脂蛋白甘油三酯(VLDL - TG)的摄取。与此一致的是,SHU9119降低了BAT中解偶联蛋白 - 1的水平(-60%),并诱导了大量细胞内脂滴,表明BAT活性严重紊乱。最后,与溶剂处理组配对喂食的SHU9119处理小鼠仍表现出这些效应,表明MC4R抑制损害BAT活性,与食物摄入量无关。这些效应并非APOE3 - Leiden.CETP背景所特有,因为SHU9119在野生型小鼠中也抑制BAT活性。我们得出结论,中枢MC3/4R信号传导的抑制损害了BAT功能,这伴随着EE降低,从而促进肥胖。我们预计激活MC4R是通过增加BAT活性来对抗肥胖的一种有前景的策略。

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