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A Serotonin-Dependent Mechanism Explains the Leptin Regulation of Bone Mass, Appetite, and Energy Expenditure

机译:血清素依赖性机制解释了瘦素对骨骼质量,食欲和能量消耗的调节作用

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Leptin inhibition of bone mass accrual requires the integrity of specific hypothalamic neurons but not expression of its receptor on these neurons. The same is true for its regulation of appetite and energy expenditure. This suggests that leptin acts elsewhere in the brain to achieve these three functions. We show here that brainstem-derived serotonin (BDS) favors bone mass accrual following its binding to Htr2c receptors on ventromedial hypothalamic neurons and appetite via Htr1a and 2b receptors on arcuate neurons. Leptin inhibits these functions and increases energy expenditure because it reduces serotonin synthesis and firing of serotonergic neurons. Accordingly, while abrogating BDS synthesis corrects the bone, appetite and energy expenditure phenotypes caused by leptin deficiency, inactivation of the leptin receptor in serotonergic neurons recapitulates them fully. This study modifies the map of leptin signaling in the brain and identifies a molecular basis for the common regulation of bone and energy metabolisms. For a video summary of this article, see the PaperFlick file with the Supplemental Data available online.
机译:瘦素对骨质累积的抑制需要特定的下丘脑神经元的完整性,但不需要这些受体在这些神经元上的表达。它对食欲和能量消耗的调节也是如此。这表明瘦素通过在大脑其他部位起作用来实现这三个功能。我们在这里显示脑干衍生的5-羟色胺(BDS)有利于骨质积聚,其与腹侧下丘脑神经元上的Htr2c受体结合并通过弓形神经元上的Htr1a和2b受体引起食欲增加。瘦素抑制这些功能并增加能量消耗,因为它减少了血清素的合成和5-羟色胺能神经元的放电。因此,在废除BDS合成可纠正由瘦素缺乏引起的骨骼,食欲和能量消耗表型的同时,血清素能神经元中瘦素受体的失活将它们完全概括。这项研究修改了大脑中瘦素信号传导的图谱,并确定了共同调节骨骼和能量代谢的分子基础。有关本文的视频摘要,请参见在线提供补充数据的PaperFlick文件。

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