Department of Biomedical Sciences,, Cornell University, Ithaca, New York 14853, USA.
Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA.
Genes Dev. 2020 Dec 1;34(23-24):1637-1649. doi: 10.1101/gad.341602.120. Epub 2020 Nov 12.
Germ cells specified during fetal development form the foundation of the mammalian germline. These primordial germ cells (PGCs) undergo rapid proliferation, yet the germline is highly refractory to mutation accumulation compared with somatic cells. Importantly, while the presence of endogenous or exogenous DNA damage has the potential to impact PGCs, there is little known about how these cells respond to stressors. To better understand the DNA damage response (DDR) in these cells, we exposed pregnant mice to ionizing radiation (IR) at specific gestational time points and assessed the DDR in PGCs. Our results show that PGCs prior to sex determination lack a G1 cell cycle checkpoint. Additionally, the response to IR-induced DNA damage differs between female and male PGCs post-sex determination. IR of female PGCs caused uncoupling of germ cell differentiation and meiotic initiation, while male PGCs exhibited repression of piRNA metabolism and transposon derepression. We also used whole-genome single-cell DNA sequencing to reveal that genetic rescue of DNA repair-deficient germ cells ( ) leads to increased mutation incidence and biases. Importantly, our work uncovers novel insights into how PGCs exposed to DNA damage can become developmentally defective, leaving only those genetically fit cells to establish the adult germline.
生殖细胞在胚胎发育过程中被特化,形成了哺乳动物生殖系的基础。这些原始生殖细胞(PGC)经历了快速增殖,但与体细胞相比,生殖系对突变积累高度耐受。重要的是,虽然内源性或外源性 DNA 损伤的存在有可能影响 PGC,但对于这些细胞如何应对应激源知之甚少。为了更好地理解这些细胞中的 DNA 损伤反应(DDR),我们在特定的妊娠时间点用电离辐射(IR)处理怀孕的小鼠,并评估 PGC 中的 DDR。我们的结果表明,在性别决定之前,PGC 缺乏 G1 细胞周期检查点。此外,性别决定后,IR 诱导的 DNA 损伤对雌性和雄性 PGC 的反应不同。IR 处理雌性 PGC 导致生殖细胞分化和减数分裂起始的解偶联,而雄性 PGC 则表现出 piRNA 代谢和转座子去抑制的抑制。我们还使用全基因组单细胞 DNA 测序来揭示,对缺乏 DNA 修复的生殖细胞()进行基因拯救会导致突变发生率增加和偏向性。重要的是,我们的工作揭示了 PGC 暴露于 DNA 损伤后如何变得发育缺陷的新见解,从而只有那些具有遗传适应性的细胞才能建立成年生殖系。