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首页> 外文期刊>Nature Communications >The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms
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The orphan receptor Gpr83 regulates systemic energy metabolism via ghrelin-dependent and ghrelin-independent mechanisms

机译:孤儿受体Gpr83通过Ghrelin依赖性和Ghrelin非依赖性机制调节全身能量代谢

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摘要

The G protein-coupled receptor 83 ( Gpr83 ) is widely expressed in brain regions regulating energy metabolism. Here we report that hypothalamic expression of Gpr83 is regulated in response to nutrient availability and is decreased in obese mice compared with lean mice. In the arcuate nucleus, Gpr83 colocalizes with the ghrelin receptor ( Ghsr1a ) and the agouti-related protein . In vitro analyses show heterodimerization of Gpr83 with Ghsr1a diminishes activation of Ghsr1a by acyl- ghrelin . The orexigenic and adipogenic effect of ghrelin is accordingly potentiated in Gpr83 -deficient mice. Interestingly, Gpr83 knock-out mice have normal body weight and glucose tolerance when fed a regular chow diet, but are protected from obesity and glucose intolerance when challenged with a high-fat diet, despite hyperphagia and increased hypothalamic expression of agouti-related protein , Npy , Hcrt and Ghsr1a . Together, our data suggest that Gpr83 modulates ghrelin action but also indicate that Gpr83 regulates systemic metabolism through other ghrelin -independent pathways.
机译:G蛋白偶联受体83(Gpr83)在调节能量代谢的大脑区域广泛表达。在这里,我们报告说,Gpr83的下丘脑表达受营养物质的利用而调节,与瘦小鼠相比,肥胖小鼠的下丘脑表达降低。在弓形核中,Gpr83与生长素释放肽受体(Ghsr1a)和刺骨相关蛋白共定位。体外分析显示,Gpr83与Ghsr1a异源二聚化可减少酰基ghrelin对Ghsr1a的活化作用。 ghrelin的致食欲和成脂作用因此在Gpr83缺陷型小鼠中得到增强。有趣的是,Gpr83基因敲除小鼠在进食常规食物时具有正常的体重和葡萄糖耐量,但是,尽管食欲亢进和下丘脑中刺骨相关蛋白的表达增加,但高脂饮食对肥胖和葡萄糖耐受性的影响却受到保护, Npy,Hcrt和Ghsr1a。在一起,我们的数据表明Gpr83调节生长激素释放肽的作用,但也表明Gpr83通过其他与生长素释放肽无关的途径调节全身代谢。

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