Rotgers E, Nurmio M, Pietilä E, Cisneros-Montalvo S, Toppari J
Department of Physiology, University of Turku, Turku, Finland.
Department of Pediatrics, University of Turku and Turku University Hospital, Turku, Finland.
Andrology. 2015 Sep;3(5):1000-14. doi: 10.1111/andr.12090.
Cell cycle control during spermatogenesis is a highly complex process owing to the control of the mitotic expansion of the spermatogonial cell population and following meiosis, induction of DNA breaks during meiosis and the high levels of physiological germ-cell apoptosis. We set out to study how E2F1, a key controller of cell cycle, apoptosis, and DNA damage responses, functions in the developing and adult testis. We first analyzed the expression pattern of E2f1 during post-natal testis development using RNA in situ hybridization, which showed a differential expression pattern of E2f1 in the adult and juvenile mouse testes. To study the function of E2f1, we took advantage of the E2F1(-/-) mouse line, which was back-crossed to C57Bl/6J genetic background. E2f1 loss led to a severe progressive testicular atrophy beginning at the age of 20 days. Spermatogonial apoptosis during the first wave of spermatogenesis was decreased. However, already in the first wave of spermatogenesis an extensive apoptosis of spermatocytes was observed. In the adult E2F1(-/-) testes, the atrophy due to loss of spermatocytes was further exacerbated by loss of spermatogonial stem cells. Surprisingly, only subtle changes in global gene expression array profiling were observed in E2F1(-/-) testis at PND20. To dissect the changes in each testicular cell type, an additional comparative analysis of the array data was performed making use of previously published data on transcriptomes of the individual testicular cell types. Taken together, our data indicate that E2F1 has a differential role during first wave of spermatogenesis and in the adult testis, which emphasizes the complex nature of cell cycle control in the developing testis.
由于精原细胞群体有丝分裂扩增的调控、减数分裂过程中DNA断裂的诱导以及生理性生殖细胞凋亡的高水平,精子发生过程中的细胞周期调控是一个高度复杂的过程。我们着手研究细胞周期、细胞凋亡和DNA损伤反应的关键调控因子E2F1在发育中的和成年睾丸中的功能。我们首先使用RNA原位杂交分析了出生后睾丸发育过程中E2f1的表达模式,结果显示E2f1在成年和幼年小鼠睾丸中的表达模式存在差异。为了研究E2f1的功能,我们利用了回交到C57Bl/6J遗传背景的E2F1(-/-)小鼠品系。E2f1缺失导致从20日龄开始严重的进行性睾丸萎缩。精子发生第一波期间精原细胞凋亡减少。然而,在精子发生第一波中已经观察到精母细胞广泛凋亡。在成年E2F1(-/-)睾丸中,精原干细胞的缺失进一步加剧了由于精母细胞缺失导致的萎缩。令人惊讶的是,在出生后第20天的E2F1(-/-)睾丸中,仅观察到全局基因表达阵列分析中的细微变化。为了剖析每种睾丸细胞类型的变化,利用先前发表的关于单个睾丸细胞类型转录组的数据对阵列数据进行了额外的比较分析。综上所述,我们的数据表明E2F1在精子发生第一波和成年睾丸中具有不同的作用,这强调了发育中睾丸细胞周期调控的复杂性。