Genetics of Premature Ovarian Insufficiency: From Molecular Architecture to Precision Medicine

Premature ovarian insufficiency (POI) affects 1–3.7% of women and causes infertility and long-term morbidity. Next-generation sequencing has identified more than 130 POI-associated genes. The diagnostic yield of genetic testing depends on cohort size and the quality and scope of the genetic analysis, reaching 29.3% in our largest international cohort reported to date. Major biological pathways involve meiosis/DNA repair, follicular growth, and mitochondrial/metabolic functions. Meiosis/DNA-repair defects can impair fetal establishment of the ovarian reserve and, depending on the gene, variant, and allelic state, may be associated with chromosomal instability or cancer predisposition. This could enable early identification of selected at-risk patients, oncogenetic assessment, and cancer-prevention strategies. In contrast, alterations affecting follicular growth, metabolism, or mitochondrial function may be associated with persistence of a residual follicular pool, revealing a limited window of opportunity for timely fertility preservation in selected patients and at-risk relatives. Genetic diagnosis provides actionable information for etiological classification, and can reveal a syndromic condition, guide family screening, and, in selected genotypes, inform comorbidity assessment and early fertility preservation. It may also guide future mechanism-based therapies. By translating molecular findings into individualized reproductive and long-term care, POI provides a paradigmatic model of precision medicine in female infertility and reproductive endocrinology.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-28
DOI
https://doi.org/10.3390/ijms27198662
Primary Topic
Reproductive Biology and Fertility
Type
article
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article

Genetics of Premature Ovarian Insufficiency: From Molecular Architecture to Precision Medicine

Micheline Misrahi, Vanessa Sousa, Gabriel Livéra
International Journal of Molecular Sciences
Reproductive Biology and Fertility
article

Genetics of Premature Ovarian Insufficiency: From Molecular Architecture to Precision Medicine

Micheline Misrahi, Vanessa Sousa, Gabriel Livéra
article en

Abstract

Premature ovarian insufficiency (POI) affects 1–3.7% of women and causes infertility and long-term morbidity. Next-generation sequencing has identified more than 130 POI-associated genes. The diagnostic yield of genetic testing depends on cohort size and the quality and scope of the genetic analysis, reaching 29.3% in our largest international cohort reported to date. Major biological pathways involve meiosis/DNA repair, follicular growth, and mitochondrial/metabolic functions. Meiosis/DNA-repair defects can impair fetal establishment of the ovarian reserve and, depending on the gene, variant, and allelic state, may be associated with chromosomal instability or cancer predisposition. This could enable early identification of selected at-risk patients, oncogenetic assessment, and cancer-prevention strategies. In contrast, alterations affecting follicular growth, metabolism, or mitochondrial function may be associated with persistence of a residual follicular pool, revealing a limited window of opportunity for timely fertility preservation in selected patients and at-risk relatives. Genetic diagnosis provides actionable information for etiological classification, and can reveal a syndromic condition, guide family screening, and, in selected genotypes, inform comorbidity assessment and early fertility preservation. It may also guide future mechanism-based therapies. By translating molecular findings into individualized reproductive and long-term care, POI provides a paradigmatic model of precision medicine in female infertility and reproductive endocrinology.

International Journal of Molecular SciencesVol. 27(19)
Inserm (FR), Universidade do Porto (PT), Université Paris Cité (FR), Commissariat à l'Énergie Atomique et aux Énergies Alternatives (FR), Université Paris-Saclay (FR), CEA Paris-Saclay - Etablissement de Fontenay-aux-roses (FR), Assistance Publique – Hôpitaux de Paris (FR), CEA Paris-Saclay (FR), Institut de Radiobiologie Cellulaire et Moléculaire (FR), Bicêtre Hospital (FR), Stabilité Génétique, Cellules Souches et Radiations (FR)
Openalex Percentile: Top 9%
Reproductive Biology and Fertility
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