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February 8, 2026Development0 citations

DIS3 ribonuclease regulates Sertoli cell development to support spermatogenesis in mice

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XWXiao WangNLNana LiHLHong Li

Key Points

  • To investigate the role of DIS3 ribonuclease in Sertoli cell function and spermatogenesis.
  • Examined DIS3 deficiency in Sertoli cells using knockout models in mice.
  • Analyzed testicular development and spermatogenesis outcomes.
  • Performed scRNA-seq analysis to evaluate gene expression changes and cell communication.
  • Utilized p53 inhibitor treatment to assess apoptosis in DIS3-deficient Sertoli cells.
  • Inhibited the Wnt/β-Catenin pathway to evaluate effects on Sertoli and germ cell populations.
  • DIS3 deficiency leads to severe testicular atrophy and loss of Sertoli and germ cells.
  • Impaired Sertoli cell proliferation and increased apoptosis were observed.
  • Altered cell communication and increased activity of p53 and Wnt signaling were noted in DIS3-deficient cells.
  • Inhibition of p53 reduced apoptosis in Sertoli cells lacking DIS3.
  • Wnt pathway inhibition improved Sertoli cell maturation and increased cell abundance.

Abstract

While DIS3 functions in male germ cells are emerging, its ribonuclease activity governing Sertoli cell RNA metabolism, essential for testicular development and spermatogenesis, remains undefined. This study identifies a critical role for exosome-associated DIS3 ribonuclease in regulating Sertoli cell maintenance and maturation during spermatogenesis. Dis3 deficiency in Sertoli cells causes severe testicular atrophy, marked by rapid depletion of both Sertoli and germ cells. This phenotype results from impaired Sertoli cell proliferation, elevated apoptosis, disrupted maturation, and compromised blood-testis barrier integrity, culminating in defective spermatogenesis and infertility. scRNA-seq analysis reveals altered cell-cell communication, alongside heightened p53 and Wnt signaling activity in Dis3 cKO Sertoli cells. p53 inhibitor treatment mitigates overt apoptosis in Dis3 cKO Sertoli cells. Similarly, inhibition of the Wnt/β-Catenin pathway increases the abundance of both Sertoli and germ cells while improving Sertoli cell maturation. Together, these findings establish Sertoli cell-specific DIS3 as essential for testicular development and spermatogenesis in mice, and implicate the p53 and Wnt/β-Catenin pathways as potential mechanistic contributors.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/698827c90fc35cd7a8846b26https://doi.org/10.1242/dev.205166
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