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Gsα deficiency in the dorsomedial hypothalamus underlies obesity associated with Gsα mutations

机译:下丘脑下丘脑中的Gsα缺乏症是与Gsα突变相关的肥胖症的基础

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摘要

Gsα, encoded by Gnas, mediates hormone and neurotransmitter receptor–stimulated cAMP generation. Heterozygous Gsα-inactivating mutations lead to obesity in Albright hereditary osteodystrophy (AHO) patients, but only when the mutations occur on the maternal allele. This parent-of-origin effect is due to Gsα imprinting in the CNS, although the relevant CNS regions are unknown. We have now shown that mice with a Gnas gene deletion disrupting Gsα expression on the maternal allele, but not the paternal allele, in the dorsomedial nucleus of the hypothalamus (DMH) developed obesity and reduced energy expenditure without hyperphagia. Although maternal Gnas deletion impaired activation of brown adipose tissue (BAT) in mice, their responses to cold environment remained intact. Similar findings were observed in mice with DMH-specific deficiency of melanocortin MC4R receptors, which are known to activate Gsα. Our results show that Gsα imprinting in the DMH underlies the parent-of-origin metabolic phenotype that results from Gsα mutations and that DMH MC4R/Gsα signaling is important for regulation of energy expenditure and BAT activation, but not the metabolic response to cold.
机译:由Gnas编码的Gsα介导激素和神经递质受体刺激的cAMP生成。杂合Gsα失活突变导致奥尔布赖特遗传性骨营养不良(AHO)患者肥胖,但仅当突变发生在母亲等位基因上时。尽管相关的CNS区域是未知的,但这种起源于母体的作用是由于Gsα在CNS中的印记所致。现在我们已经显示,具有Gnas基因缺失的小鼠破坏了下丘脑(DMH)背侧核中母本等位基因上的Gsα表达,但不破坏母本等位基因上的Gsα表达,从而发展了肥胖症并减少了能量消耗,而没有食欲亢进。尽管母体Gnas缺失削弱了小鼠棕色脂肪组织(BAT)的活化,但它们对寒冷环境的反应仍然完整。在具有DMH特异性黑皮质素MC4R受体缺乏症的小鼠中观察到了类似的发现,已知该小鼠激活Gsα。我们的结果表明,DMH中的Gsα印记是由Gsα突变产生的母体代谢表型的基础,而DMH MC4R /Gsα信号传导对于调节能量消耗和BAT激活很重要,但对寒冷的代谢反应并不重要。

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