Department of Human and Molecular Genetics, Herbert Wertheim College of Medicine, Florida International University, Miami, Florida, USA.
PLoS One. 2013 Jul 30;8(7):e71213. doi: 10.1371/journal.pone.0071213. Print 2013.
NOTCH1 is a member of the NOTCH receptor family, a group of single-pass trans-membrane receptors. NOTCH signaling is highly conserved in evolution and mediates communication between adjacent cells. NOTCH receptors have been implicated in cell fate determination, as well as maintenance and differentiation of stem cells. In the mammalian testis expression of NOTCH1 in somatic and germ cells has been demonstrated, however its role in spermatogenesis was not clear. To study the significance of NOTCH1 in germ cells, we applied a cre/loxP approach in mice to induce NOTCH1 gain- or loss-of function specifically in male germ cells. Using a Stra8-icre transgene we produced mice with conditional activation of the NOTCH1 intracellular domain (NICD) in germ cells. Spermatogenesis in these mutants was progressively affected with age, resulting in decreased testis weight and sperm count. Analysis of downstream target genes of NOTCH1 signaling showed an increased expression of Hes5, with a reduction of the spermatogonial differentiation marker, Neurog3 expression in the mutant testis. Apoptosis was significantly increased in mouse germ cells with the corresponding elevation of pro-apoptotic Trp53 and Trp63 genes' expression. We also showed that the conditional germ cell-specific ablation of Notch1 had no effect on spermatogenesis or male fertility. Our data suggest the importance of NOTCH signaling regulation in male germ cells for their survival and differentiation.
NOTCH1 是 NOTCH 受体家族的成员,NOTCH 受体家族是一组单次跨膜受体。NOTCH 信号在进化中高度保守,介导相邻细胞之间的通讯。NOTCH 受体参与细胞命运决定以及干细胞的维持和分化。在哺乳动物睾丸中,已经证明 NOTCH1 在体细胞和生殖细胞中表达,但它在精子发生中的作用尚不清楚。为了研究 NOTCH1 在生殖细胞中的意义,我们在小鼠中应用 cre/loxP 方法特异性地诱导生殖细胞中 NOTCH1 的功能获得或缺失。使用 Stra8-icre 转基因,我们产生了生殖细胞中 NOTCH1 细胞内结构域(NICD)条件激活的小鼠。这些突变体的精子发生随着年龄的增长而逐渐受到影响,导致睾丸重量和精子计数减少。对 NOTCH1 信号转导的下游靶基因的分析显示 Hes5 的表达增加,而突变睾丸中神经调节蛋白 3(Neurog3)的表达减少,这是精原细胞分化的标记物。细胞凋亡在小鼠生殖细胞中显著增加,相应地,促凋亡基因 Trp53 和 Trp63 的表达增加。我们还表明,条件性生殖细胞特异性 Notch1 缺失对精子发生或雄性生育力没有影响。我们的数据表明,NOTCH 信号转导调节在雄性生殖细胞的生存和分化中非常重要。