Doorgaan naar hoofdnavigatie Doorgaan naar zoeken Ga verder naar hoofdinhoud

Understanding the genetic complexity of puberty timing across the allele frequency spectrum

  • ABCTB Investigators
  • , The LifeLines Cohort Study
  • , The Danish Blood Donor Study
  • , The Biobank Japan Project
  • , The China Kadoorie Biobank Collaborative Group

Onderzoeksoutput: Bijdrage aan tijdschriftArtikelpeer review

46 Citaten (Scopus)

Samenvatting

Pubertal timing varies considerably and is associated with later health outcomes. We performed multi-ancestry genetic analyses on ~800,000 women, identifying 1,080 signals for age at menarche. Collectively, these explained 11% of trait variance in an independent sample. Women at the top and bottom 1% of polygenic risk exhibited ~11 and ~14-fold higher risks of delayed and precocious puberty, respectively. We identified several genes harboring rare loss-of-function variants in ~200,000 women, including variants in ZNF483, which abolished the impact of polygenic risk. Variant-to-gene mapping approaches and mouse gonadotropin-releasing hormone neuron RNA sequencing implicated 665 genes, including an uncharacterized G-protein-coupled receptor, GPR83, which amplified the signaling of MC3R, a key nutritional sensor. Shared signals with menopause timing at genes involved in DNA damage response suggest that the ovarian reserve might signal centrally to trigger puberty. We also highlight body size-dependent and independent mechanisms that potentially link reproductive timing to later life disease.

Originele taal-2Engels
Pagina's (van-tot)1397-1411
Aantal pagina's15
TijdschriftNature genetics
Volume56
Nummer van het tijdschrift7
DOI's
StatusGepubliceerd - jul 2024
Extern gepubliceerdJa

Vingerafdruk

Duik in de onderzoeksthema's van 'Understanding the genetic complexity of puberty timing across the allele frequency spectrum'. Samen vormen ze een unieke vingerafdruk.

Citeer dit