MC3R links nutritional state to childhood growth and the timing of puberty.
View / Open Files
Authors
Gonçalves Soares, A
Sweeney, P
Bedenbaugh, MN
Melvin, A
Ellacott, KLJ
Lippert, RN
Buller, S
Rosmaninho-Salgado, J
Dowsett, GKC
Ridley, KE
Xu, Z
Rimmington, D
Rainbow, K
Duckett, K
Dai, X
Bochukova, EG
Genes & Health Research Team
Trembath, RC
Coll, AP
Publication Date
2021-11Journal Title
Nature
ISSN
0028-0836
Publisher
Springer Science and Business Media LLC
Volume
599
Issue
7885
Pages
436-441
Language
eng
Type
Article
This Version
AM
Metadata
Show full item recordCitation
Lam, B., Williamson, A., Finer, S., Day, F., Tadross, J., Gonçalves Soares, A., Wade, K., et al. (2021). MC3R links nutritional state to childhood growth and the timing of puberty.. Nature, 599 (7885), 436-441. https://doi.org/10.1038/s41586-021-04088-9
Abstract
The state of somatic energy stores in metazoans is communicated to the brain, which regulates key aspects of behaviour, growth, nutrient partitioning and development1. The central melanocortin system acts through melanocortin 4 receptor (MC4R) to control appetite, food intake and energy expenditure2. 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.
Keywords
Adolescent, Aged, 80 and over, Animals, Child, Child Development, Estrous Cycle, Female, Homozygote, Humans, Hypothalamus, Insulin-Like Growth Factor I, Male, Melanocortins, Menarche, Mice, Nutritional Status, Phenotype, Puberty, Receptor, Melanocortin, Type 3, Sexual Maturation, Time Factors, Weight Gain
Sponsorship
Medical Research Council (MC_UU_12015/1)
Medical Research Council (MR/N003284/1)
Wellcome Trust (208363/Z/17/Z)
Biotechnology and Biological Sciences Research Council (BB/S017593/1)
MRC (MC_UU_00014/1)
MRC (MC_UU_00014/5)
Medical Research Council (MC_UU_12015/2)
MRC (MC_UU_00006/2)
Medical Research Council (MC_UU_12012/1)
Medical Research Council (MC_UU_12012/5)
European Research Council (789054)
MRC (MC_UU_00006/1)
National Institute for Health Research (IS-BRC-1215-20014)
Wellcome Trust (214274/Z/18/Z)
Biotechnology and Biological Sciences Research Council (2292908)
Medical Research Council (G1000143)
Medical Research Council (G0401527)
Identifiers
External DOI: https://doi.org/10.1038/s41586-021-04088-9
This record's URL: https://www.repository.cam.ac.uk/handle/1810/329880
Statistics
Total file downloads (since January 2020). For more information on metrics see the
IRUS guide.
Recommended or similar items
The current recommendation prototype on the Apollo Repository will be turned off on 03 February 2023. Although the pilot has been fruitful for both parties, the service provider IKVA is focusing on horizon scanning products and so the recommender service can no longer be supported. We recognise the importance of recommender services in supporting research discovery and are evaluating offerings from other service providers. If you would like to offer feedback on this decision please contact us on: support@repository.cam.ac.uk