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Updated: May 13, 2026

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Published on: July 22, 2025
The REV7 subunit of DNA polymerase ζ is essential for primordial germ cell maintenance in the mouse
Naoki Watanabe1, Shinji Mii, Naoya Asai
1Department of Pathology, Nagoya University Graduate School of Medicine, 65 Tsurumai-cho, Showa-ku, Nagoya 466-8550, Japan.
Abstract:
REV7 (also known as MAD2L2 and MAD2B) is involved in DNA repair, cell cycle regulation, gene expression, and carcinogenesis. In vitro studies show that REV7 interacts with several proteins and regulates their function. It has been reported that human REV7 is highly expressed in the adult testis by Northern blot analysis. However, the significance of REV7 in mammalian development has not been elucidated. Here, we present analyses of REV7-deficient (Rev7(-/-)) mice to clarify the significance of Rev7 in mouse development. In WT mice (Rev7(+/+)), Rev7 expression was ubiquitously observed in the embryo and confined to germ cells in the testes after birth. Rev7(-/-) mice exhibited growth retardation and a partial embryonic lethal phenotype. Mice that survived to adulthood were infertile in both sexes and showed germ cell aplasia in the testes and ovaries. Analyses of Rev7(-/-) embryos revealed that primordial germ cells (PGCs) were present at embryonic day 8.5 (E8.5). However, progressive loss of PGCs was observed during migration, and PGCs were absent in the genital ridges at E13.5. An increase of apoptotic cells was detected not only among PGCs but also in the forebrain of the Rev7(-/-) embryo, whereas cell proliferation was unaffected. Moreover, DNA damage accumulation and increased levels of histone methylation were detected in Rev7(-/-) embryos, and expression of Oct4 and Nanog was deregulated by REV7 deficiency at E8.5. These findings indicate that Rev7 is essential for PGC maintenance by prevention of apoptotic cell death in the mouse.
Insights
REV7 protein is crucial for mouse development, particularly for maintaining primordial germ cells. Its absence leads to germ cell loss, infertility, and embryonic lethality in mice.
Area of Science:
- Developmental Biology
- Genetics
- Cell Biology
Background:
- REV7 (MAD2L2/MAD2B) is implicated in DNA repair, cell cycle, gene expression, and cancer.
- Previous studies indicated high REV7 expression in adult human testes, but its developmental role remained unclear.
Purpose of the Study:
- To investigate the significance of REV7 in mammalian development using REV7-deficient mice.
- To elucidate the function of REV7 in germ cell development and embryonic viability.
Main Methods:
- Analysis of REV7 expression in wild-type (WT) and REV7-deficient (Rev7(-/-)) mice embryos and adults.
- Phenotypic analysis of Rev7(-/-) mice, including growth, survival, fertility, and germ cell development.
- Assessment of apoptosis, cell proliferation, DNA damage, histone methylation, and key gene expression (Oct4, Nanog) in embryos.
Main Results:
- Rev7(-/-) mice exhibited growth retardation and partial embryonic lethality.
- Adult Rev7(-/-) mice were infertile with germ cell aplasia in testes and ovaries.
- Loss of primordial germ cells (PGCs) during migration was observed in Rev7(-/-) embryos, with absence by E13.5.
- Increased apoptosis in PGCs and forebrain, DNA damage, and deregulated Oct4/Nanog expression were noted in Rev7(-/-) embryos.
- Cell proliferation remained unaffected in Rev7(-/-) embryos.
Conclusions:
- REV7 is essential for PGC maintenance during mouse development.
- REV7 prevents PGC loss by inhibiting apoptotic cell death.
- REV7 deficiency leads to infertility and developmental defects due to PGC loss.
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