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黑素皮质素 3 受体对能量动态平衡的调节。

Regulation of energy rheostasis by the melanocortin-3 receptor.

机构信息

Department of Molecular Physiology and Biophysics, Vanderbilt University School of Medicine, 702 Light Hall, Nashville, TN 37232, USA.

Life Sciences Institute and Department of Molecular and Integrative Physiology, University of Michigan, 210 Washtenaw Avenue, Ann Arbor, MI 48109-2216, USA.

出版信息

Sci Adv. 2018 Aug 22;4(8):eaat0866. doi: 10.1126/sciadv.aat0866. eCollection 2018 Aug.

Abstract

Like most homeostatic systems, adiposity in mammals is defended between upper and lower boundary conditions. While leptin and melanocortin-4 receptor (MC4R) signaling are required for defending energy set point, mechanisms controlling upper and lower homeostatic boundaries are less well understood. In contrast to the MC4R, deletion of the MC3R does not produce measurable hyperphagia or hypometabolism under normal conditions. However, we demonstrate that MC3R is required bidirectionally for controlling responses to external homeostatic challenges, such as caloric restriction or calorie-rich diet. MC3R is also required for regulated excursion from set point, or rheostasis, during pregnancy. Further, we demonstrate a molecular mechanism: MC3R provides regulatory inputs to melanocortin signaling, acting presynaptically on agouti-related protein neurons to regulate γ-aminobutyric acid release onto anorexigenic MC4R neurons, exerting boundary control on the activity of MC4R neurons. Thus, the MC3R is a critical regulator of boundary controls on melanocortin signaling, providing rheostatic control on energy storage.

摘要

与大多数体内平衡系统一样,哺乳动物的肥胖程度在上下边界条件之间受到保护。虽然瘦素和黑素皮质素 4 受体(MC4R)信号对于维持能量设定点是必需的,但控制上下体内平衡边界的机制还不太清楚。与 MC4R 不同,MC3R 的缺失在正常情况下不会产生可测量的多食或低代谢。然而,我们证明 MC3R 双向需要控制对外在体内平衡挑战的反应,例如热量限制或高热量饮食。MC3R 也需要在怀孕期间从设定点进行调节性偏离,或动态平衡。此外,我们证明了一种分子机制:MC3R 为黑素皮质素信号提供调节输入,通过作用于 AgRP 神经元的突触前,调节 GABA 释放到厌食性 MC4R 神经元上,对 MC4R 神经元的活动施加边界控制,从而调节能量储存的动态平衡。因此,MC3R 是黑素皮质素信号边界控制的关键调节剂,为能量储存提供了动态平衡控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2de8/6105298/22bd53cb39e1/aat0866-F1.jpg

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