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Targeting the PRMT5/Nur77 methylation axis enhances endometrial decidualization capacity and female fertility in preclinical models
Zhiwen Cao, Xinyu Cai, Jie Mei, Na Kong, Yang Liu, Xiaoyue Shen, Min Wu, Xin Zhen, Jianxin Sun, Rong Li, Ruiwei Jiang, Haixiang Sun, Guijun Yan
Zhiwen Cao, Xinyu Cai, Jie Mei, Na Kong, Yang Liu, Xiaoyue Shen, Min Wu, Xin Zhen, Jianxin Sun, Rong Li, Ruiwei Jiang, Haixiang Sun, Guijun Yan
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Research Article Genetics Reproductive biology

Targeting the PRMT5/Nur77 methylation axis enhances endometrial decidualization capacity and female fertility in preclinical models

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Abstract

Defective endometrial decidualization is one major cause of female infertility, yet the underlying mechanisms remain elusive. Here, we identified that protein arginine methyltransferase 5 (PRMT5), which was upregulated during decidualization and by progesterone stimulation, was markedly downregulated in the endometria of patients with recurrent implantation failure (RIF), along with a global reduction of symmetric dimethylarginine (SDMA). Uterine stroma-specific ablation of Prmt5 in mice severely impaired decidualization, leading to infertility. A multiomics analysis in human endometrial stromal cells (EnSCs) revealed that PRMT5 promoted decidualization primarily by catalyzing SDMA at arginine 346 (R346) of the orphan nuclear receptor Nur77, which directs its proper chromatin occupancy. Targeting the PRMT5/Nur77 methylation axis, we designed a peptide, Pep-Nur77R346K, which rescued the decidualization of multiple preclinical models: PRMT5-deficient human EnSCs, both genetic knockout (Prmt5d/d) and pharmacologically inhibited mouse models, and most importantly, primary RIF EnSCs. In a retrospective cohort of 114 participants, the correlated reductions of endometrial PRMT5/Nur77-R346me2s were confirmed, which demonstrated robust predictive value for pregnancy outcome. Our work establishes the PRMT5/Nur77 methylation axis as a key regulator of endometrial receptivity and highlights both a diagnostic biomarker and a peptide-based therapeutic potential for infertility.

Authors

Zhiwen Cao, Xinyu Cai, Jie Mei, Na Kong, Yang Liu, Xiaoyue Shen, Min Wu, Xin Zhen, Jianxin Sun, Rong Li, Ruiwei Jiang, Haixiang Sun, Guijun Yan

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Figure 1

PRMT5-mediated arginine methylome is compromised in RIF.

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PRMT5-mediated arginine methylome is compromised in RIF.
(A) Schematic d...
(A) Schematic diagram illustrating the collection of endometrium samples for transcriptome sequencing at different time points during the secretory phase of LH in normal FER, as well as Alstra-DIA methylation sequencing of endometrial samples at the LH+7 time point from both controls and patients with RIF. (B) Transcriptomic analysis reveals the expression dynamics of PRMT family expression profiles at different time points during the secretory phase. (C and D) Western blot analysis revealing expression patterns of 3 protein arginine methylation modifications (SDMA, ADMA, MMA) in human endometrium temporal dynamics from LH+2 to LH+11 days during secretory phase (C) (n = 3) and between FER and RIF patients (D) (n = 6). (E) Immunofluorescence detection of SDMA expression and localization in midsecretory-phase endometrium from FER and RIF patients. (F) The number of proteins with differentially expressed SDMA-modified peptides in RIF compared with FER endometria, using Alstra-DIA methylation sequencing and co-immunoprecipitation of anti-SDMA antibody. (G) Biological Process (Gene Ontology) enrichment analysis of differentially methylated proteins in RIF compared with FER groups. (H) Heatmap of PRMT family expression profiles in FER and RIF endometria at LH+7 (n = 6). Western blot (I) analysis of PRMT5 protein levels and IHC staining (J) and IHC quantitative analysis (K) of PRMT5 expression in endometrial epithelial and stromal cells in FER and RIF patients (n = 24). Data represent mean ± SEM. **P < 0.01; ***P < 0.001; ****P < 0.0001; Student’s t test. Black and white scale bars: 100 μm. FER, fertile controls; RIF, recurrent implantation failure; DIA, data-independent acquisition; SDMA, symmetric dimethylarginine; ADMA, asymmetric dimethylarginine; MMA, monomethylarginine; LH, luteinizing hormone; GE, glandular epithelium; LE, luminal epithelium; S, stroma.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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