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April 25, 2026Nature Genetics7 citationsOpen Access

Genomic analyses implicate hormonal and metabolic dysregulation in polycystic ovary syndrome

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LMLoes M. E. MoolhuijsenJZJia ZhuBMBenjamin H. Mullin

Key Points

  • This study aims to expand the understanding of genetic factors contributing to polycystic ovary syndrome and its metabolic implications.
  • Genetic analysis involving 544,513 participants to identify genetic loci and plasma proteins associated with PCOS.
  • Proteomic analysis to assess metabolic biology related to hormonal regulation in PCOS.
  • Assessment of a polygenic risk score (PRS) to evaluate its association with cardiometabolic outcomes.
  • Expanded the number of genetic loci associated with PCOS from 16 to 29 and identified 31 linked plasma proteins.
  • Found that certain loci were related to later age at menopause, suggesting influences on reproductive longevity.
  • PRS was connected to adverse cardiometabolic outcomes, differing in relevance between testosterone and body mass index for genders, indicating metabolic consequences.

Abstract

Abstract Polycystic ovary syndrome (PCOS) and its underlying features remain poorly understood. In this genetic study ( n = 544,513), we expand the number of genetic loci from 16 to 29, and additionally identify 31 associated plasma proteins. Many risk-increasing loci were associated with later age at menopause, underscoring the reproductive longevity related to an increased oocyte number and/or availability across the lifespan. Hormonal regulation in the etiology of this condition, through metabolic and reproductive features, was emphasized. The proteomic analysis highlighted metabolic biology known to be related to PCOS. A polygenic risk score (PRS) was associated with adverse cardiometabolic outcomes, with differing relevance of testosterone and body mass index in women and men. Finally, while oligo-anovulation and anovulatory infertility are features of PCOS, we observed no impact of PCOS susceptibility on childlessness. We suggest that PCOS susceptibility confers balanced pleiotropic influences on fertility in women, and life-long adverse metabolic consequences in both sexes.

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Cite This Study

Moolhuijsen et al. (2026) studied this question.

synapsesocial.com/papers/69ec5b8a88ba6daa22dad01fhttps://doi.org/10.1038/s41588-026-02543-9
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