ArticleJournal of translational medicine2024
USP14 inhibition promotes DNA damage repair and represses ovarian granulosa cell senescence in premature ovarian insufficiency.
Article in Journal of translational medicine, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed.
- A Novel Role of DELTEX2 in Maintaining Genomic Stability of Granulosa Cells During Ovarian Aging.FASEB journal : official publication of the Federation of American Societies for Experimental Biology · 2026Article
- Deubiquitinating enzymes in cervical cancer: Molecular mechanisms and therapeutic implications (Review).International journal of oncology · 2026Review
- Hyperhomocysteinemia reduces the high-quality embryo rate in PCOS patients undergoing IVF/ICSI: clinical evidence and a preliminary exploration of mechanisms in KGN cells.Journal of ovarian research · 2026Article
- Immediate protective effect of rUCMSC-EVs on ovarian function in a cyclophosphamide -induced premature ovarian insufficiency rats: counteracting granulosa cell apoptosis.Journal of ovarian research · 2026Article
- Dysregulated post‑translational modifications in granulosa cells drive ovarian dysfunction and potential infertility applications (Review).International journal of molecular medicine · 2026Review
- Bioactive natural products predominantly derived from Chinese herbal medicines for diminished ovarian reserve: mechanistic insights into ovarian protection.Frontiers in endocrinology · 2026Review
- Mesenchymal stem cells and their promise in reversing ovarian aging.Journal of ovarian research · 2025Review
- The implications of LncRNAs and premature ovarian insufficiency.Journal of ovarian research · 2025Review
- Decoding the genetic architecture of women reproductive aging: multi-omic integration identifies novel loci and mechanistic pathways for precision intervention.BMC genomics · 2025Article
- Immunoinflammation and post-translational modifications in the aging process.Journal of translational medicine · 2025Review
- KAT2B regulates estradiol synthesis via H3K27ac/PPARα in granulosa cells of PCOS patients.Journal of translational medicine · 2025Article
- CCDC134 enhances ovarian reserve function and angiogenesis by directly interacting with INHA in a mouse model of premature ovarian insufficiency.Apoptosis : an international journal on programmed cell death · 2025Article
- The Functions and Implications of MicroRNAs in Premature Ovarian Insufficiency.Molecular genetics & genomic medicine · 2025Review
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Abstract
backgroundPremature ovarian insufficiency (POI) is a condition characterized by a substantial decline or loss of ovarian function in women before the age of 40. However, the pathogenesis of POI remains to be further elucidated, and specific targeted drugs which could delay or reverse ovarian reserve decline are urgently needed. Abnormal DNA damage repair (DDR) and cell senescence in granulosa cells are pathogenic mechanisms of POI. Ubiquitin-specific protease 14 (USP14) is a key enzyme that regulates the deubiquitylation of DDR-related proteins, but whether USP14 participates in the pathogenesis of POI remains unclear.
methodsWe measured USP14 mRNA expression in granulosa cells from biochemical POI (bPOI) patients. In KGN cells, we used IU1 and siRNA-USP14 to specifically inhibit USP14 and constructed a cell line stably overexpressing USP14 to examine its effects on DDR function and cellular senescence in granulosa cells. Next, we explored the therapeutic potential of IU1 in POI mouse models induced by D-galactose.
resultsUSP14 expression in the granulosa cells of bPOI patients was significantly upregulated. In KGN cells, IU1 treatment and siUSP14 transfection decreased etoposide-induced DNA damage levels, promoted DDR function, and inhibited cell senescence. USP14 overexpression increased DNA damage, impaired DDR function, and promoted cell senescence. Moreover, IU1 treatment and siUSP14 transfection increased nonhomologous end joining (NHEJ), upregulated RNF168, Ku70, and DDB1, and increased ubiquitinated DDB1 levels in KGN cells. Conversely, USP14 overexpression had the opposite effects. Intraperitoneal IU1 injection alleviated etoposide-induced DNA damage in granulosa cells, ameliorated the D-galactose-induced POI phenotype, promoted DDR, and inhibited cell senescence in ovarian granulosa cells in vivo.
conclusionsUpregulated USP14 in ovarian granulosa cells may play a role in POI pathogenesis, and targeting USP14 may be a potential POI treatment strategy. Our study provides new insights into the pathogenesis of POI and a novel POI treatment strategy.
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