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PRMT5 Inhibition Promotes Cross-Species Spermatogonia Expansion and Suppresses Differentiation

GSE319135 Mus musculus Expression profiling by high throughput sequencing 9 samples Submitted 2026/02/16 Platform GPL24247
Summary
Spermatogonial stem cells (SSCs) hold great promise for treating male infertility, but their clinical translation is impeded by the lack of optimal conditions to maintain their undifferentiated state in vitro. In this study, we focused on epigenetic regulators upregulated during differentiation as potential targets. Through a small-molecule screen targeting such conserved regulators, we found that PRMT5 inhibition suppressed mouse SSC differentiation and enhanced their proliferation in a GDNF-deficient, differentiation-prone microenvironment in vitro. Using SSC transplantation assays, we confirmed that EPZ015666-treated SSCs retained their spermatogonial identity. This differentiation-inhibitory effect was reversible upon EPZ015666 withdrawal, allowing for the restoration of normal spermatogenesis. Notably, EPZ015666 also inhibited differentiation and promoted the proliferation of human and non-human primate spermatogonia in vitro. Mechanistically, EPZ015666 exerted this effect by inhibiting the enzymatic active site of PRMT5. These findings suggest that PRMT5 inhibition could provide a novel strategy for culturing human SSCs in vitro.
Published in
PRMT5 inhibition promotes cross-species spermatogonia expansion and suppresses differentiation
Yao Z, Wang W, Tang K et al. · Cell regeneration (London, England) 2026 · PMID 42410128 · doi:10.1186/s13619-026-00293-x
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Also filed as BioProject PRJNA1422162 and SRA study SRP676290. Searching any of these in the dataset finder brings you back here.

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