Suzuki Hitomi, Tsuda Masayuki, Kiso Makoto, Saga Yumiko
Department of Biological Sciences, Graduate School of Science, University of Tokyo, Hongo 7-3-1, Bunkyo, Tokyo 113-0033, Japan.
Dev Biol. 2008 Jun 1;318(1):133-42. doi: 10.1016/j.ydbio.2008.03.020. Epub 2008 Mar 20.
Cell death in the germ line is controlled by both positive and negative mechanisms that maintain the appropriate number of germ cells and that prevent the possible formation of germ cell tumors. In the mouse embryo, Steel/c-Kit signaling is required to prevent migrating primordial germ cells (PGCs) from undergoing Bax-dependent apoptosis. In our current study, we show that migrating PGCs also undergo apoptosis in Nanos3-null embryos. We assessed whether the Bax-dependent apoptotic pathway is responsible for this cell death by knocking out the Bax gene together with the Nanos3 gene. Differing from Steel-null embryos, however, the Bax elimination did not completely rescue PGC apoptosis in Nanos3-null embryos, and only a portion of the PGCs survived in the double knockout embryo. We further established a mouse line, Nanos3-Cre-pA, to undertake lineage analysis and our results indicate that most of the Nanos3-null PGCs die rather than differentiate into somatic cells, irrespective of the presence or absence of Bax. In addition, a small number of surviving PGCs in Nanos3/Bax-null mice are maintained and differentiate as male and female germ cells in the adult gonads. Our findings thus suggest that heterogeneity exists in the PGC populations and that Nanos3 maintains the germ cell lineage by suppressing both Bax-dependent and Bax-independent apoptotic pathways.
生殖系中的细胞死亡受正向和负向机制的控制,这些机制维持着适当数量的生殖细胞,并防止生殖细胞肿瘤的可能形成。在小鼠胚胎中,Steel/c-Kit信号传导是防止迁移的原始生殖细胞(PGC)发生Bax依赖性凋亡所必需的。在我们目前的研究中,我们发现迁移的PGC在Nanos3基因缺失的胚胎中也会发生凋亡。我们通过与Nanos3基因一起敲除Bax基因,评估了Bax依赖性凋亡途径是否是这种细胞死亡的原因。然而,与Steel基因缺失的胚胎不同,Bax的缺失并没有完全挽救Nanos3基因缺失胚胎中的PGC凋亡,只有一部分PGC在双敲除胚胎中存活下来。我们进一步建立了一个小鼠品系Nanos3-Cre-pA来进行谱系分析,我们的结果表明,无论是否存在Bax,大多数Nanos3基因缺失的PGC都会死亡,而不是分化为体细胞。此外,Nanos3/Bax基因缺失小鼠中少数存活的PGC会在成年性腺中维持并分化为雄性和雌性生殖细胞。因此,我们的研究结果表明,PGC群体中存在异质性,并且Nanos3通过抑制Bax依赖性和Bax非依赖性凋亡途径来维持生殖细胞谱系。