CEA, DSV/iRCM/SCSR/LDG, Laboratory of Development of the Gonads, Unit of Stem Cells and Radiation, Fontenay-aux-Roses F-92265, France.
Cell Death Dis. 2013 Aug 15;4(8):e774. doi: 10.1038/cddis.2013.281.
Rad54 is an important factor in the homologous recombination pathway of DNA double-strand break repair. However, Rad54 knockout (KO) mice do not exhibit overt phenotypes at adulthood, even when exposed to radiation. In this study, we show that in Rad54 KO mouse the germline is actually altered. Compared with the wild-type (WT) animals, these mice have less premeiotic germ cells. This germ cell loss is found as early as in E11.5 embryos, suggesting an early failure during mutant primordial germ cells development. Both testicular and ovarian KO germ cells exhibited high radiation sensitivity leading to a long-term gametogenesis defect at adulthood. The KO female germline was particularly affected displaying decreased litter size or sterility. Spermatogenesis recovery after irradiation was slower and incomplete in Rad54 KO mice compared with that of WT mice, suggesting that loss of germ stem cell precursors is not fully compensated along the successive rounds of spermatogenesis. Finally, spermatogenesis recovery after postnatal irradiation is in part regulated by glial-cell-line-derived neurotrophic factor (GDNF) in KO but not in irradiated WT mice, suggesting that Sertoli cell GDNF production is stimulated upon substantial germ cell loss only. Our findings suggest that Rad54 has a key function in maintaining genomic integrity of the developing germ cells.
Rad54 是 DNA 双链断裂修复同源重组途径中的一个重要因素。然而,Rad54 敲除 (KO) 小鼠在成年期即使暴露在辐射下也不会表现出明显的表型。在本研究中,我们表明 Rad54 KO 小鼠的生殖细胞实际上发生了改变。与野生型 (WT) 动物相比,这些小鼠的减数分裂前生殖细胞较少。这种生殖细胞的丢失早在 E11.5 胚胎中就已经发现,提示在突变原始生殖细胞发育过程中存在早期失败。睾丸和卵巢 KO 生殖细胞均表现出对辐射的高敏感性,导致成年后长期配子发生缺陷。KO 雌性生殖细胞特别受到影响,表现为产仔数减少或不育。与 WT 小鼠相比,Rad54 KO 小鼠的精子发生恢复在辐射后较慢且不完全,表明生殖干细胞前体的丢失在连续的精子发生过程中不能完全得到补偿。最后,与 WT 小鼠相比,Rad54 KO 小鼠的出生后辐射后精子发生恢复部分受胶质细胞系衍生的神经营养因子 (GDNF) 调节,提示只有在大量生殖细胞丢失时,Sertoli 细胞 GDNF 的产生才会受到刺激。我们的研究结果表明,Rad54 在维持发育中生殖细胞的基因组完整性方面具有关键作用。