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MC3R 将营养状态与儿童生长和青春期时间联系起来。

MC3R links nutritional state to childhood growth and the timing of puberty.

机构信息

MRC Metabolic Diseases Unit, Wellcome-MRC Institute of Metabolic Science, University of Cambridge, Cambridge, UK.

NIHR Cambridge Biomedical Research Centre, Cambridge, UK.

出版信息

Nature. 2021 Nov;599(7885):436-441. doi: 10.1038/s41586-021-04088-9. Epub 2021 Nov 3.

Abstract

The state of somatic energy stores in metazoans is communicated to the brain, which regulates key aspects of behaviour, growth, nutrient partitioning and development. The central melanocortin system acts through melanocortin 4 receptor (MC4R) to control appetite, food intake and energy expenditure. Here we present evidence that MC3R regulates the timing of sexual maturation, the rate of linear growth and the accrual of lean mass, which are all energy-sensitive processes. We found that humans who carry loss-of-function mutations in MC3R, including a rare homozygote individual, have a later onset of puberty. Consistent with previous findings in mice, they also had reduced linear growth, lean mass and circulating levels of IGF1. Mice lacking Mc3r had delayed sexual maturation and an insensitivity of reproductive cycle length to nutritional perturbation. The expression of Mc3r is enriched in hypothalamic neurons that control reproduction and growth, and expression increases during postnatal development in a manner that is consistent with a role in the regulation of sexual maturation. These findings suggest a bifurcating model of nutrient sensing by the central melanocortin pathway with signalling through MC4R controlling the acquisition and retention of calories, whereas signalling through MC3R primarily regulates the disposition of calories into growth, lean mass and the timing of sexual maturation.

摘要

后生动物体细胞能量储存状态会传递给大脑,大脑会调节行为、生长、营养分配和发育等关键方面。中央黑皮质素系统通过黑皮质素 4 受体 (MC4R) 发挥作用,控制食欲、食物摄入和能量消耗。本文提供的证据表明,MC3R 调节性成熟的时间、线性生长速度和瘦体重的积累,这些都是对能量敏感的过程。我们发现,携带 MC3R 功能丧失突变的人类,包括罕见的纯合子个体,青春期开始较晚。与之前在小鼠中的发现一致,他们的线性生长、瘦体重和循环 IGF1 水平也较低。缺乏 Mc3r 的小鼠性成熟延迟,生殖周期长度对营养干扰不敏感。Mc3r 在控制生殖和生长的下丘脑神经元中表达丰富,其表达在出生后发育过程中增加,这与调节性成熟的作用一致。这些发现表明,中央黑皮质素途径的营养感应存在分叉模型,通过 MC4R 传递的信号控制卡路里的获取和保留,而通过 MC3R 传递的信号主要调节卡路里分配到生长、瘦体重和性成熟的时间。

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