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January 17, 2026Nucleic Acids Research0 citationsOpen Access

Derepression of a single microRNA target causes female infertility in mice

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JSJoanna StefanoLELara E. ElcavageSHSue-Jean Hong

Key Points

  • This research investigates how the derepression of Zeb1 affects female fertility via microRNA regulation.
  • Utilized gene-edited mice with a miR-200a/b-resistant form of Zeb1.
  • Analyzed hormonal production, specifically luteinizing hormone levels.
  • Examined changes in pituitary gene expression related to ZEB1 targets and mesenchymal genes.
  • Derepression of Zeb1 caused decreased luteinizing hormone production.
  • Observed anovulatory infertility in female mice.
  • Widespread changes in gene expression were noted, including decreased miR-200a/b levels and increased mesenchymal and neuronal gene levels.

Abstract

Abstract The miR-200a and miR-200b families control mouse ovulation and are essential for female fertility. The ZEB1 transcription factor is a conserved target of both families and has been implicated as a key player in female fertility at multiple levels. Using gene-edited mice that express a miR-200a/b-resistant form of Zeb1, we found that derepression of Zeb1 in the female pituitary caused decreased production of luteinizing hormone and anovulatory infertility. These phenotypes were accompanied by widespread changes in pituitary gene expression characterized by decreased levels of ZEB1 targets, which include the miR-200a/b microRNAs (miRNAs), as expected from the miR-200a/b–ZEB1 double-negative feedback loop. Also observed were increased levels of mesenchymal genes, neuronal genes, and miR-200a/b targets. These results show that a double-negative feedback loop centered on the miRNA regulation of a single transcription factor can significantly influence the expression of thousands of genes and have dramatic phenotypic consequences.

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Cite This Study

Stefano et al. (2025) studied this question.

synapsesocial.com/papers/696b25cfd2a12237a934917bhttps://doi.org/10.1093/nar/gkaf1357
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