Suzuki Atsushi, Tsuda Masayuki, Saga Yumiko
Department of Genetics, National Institute of Genetics, SOKENDAI, 1111 Yata, Mishima, Shizuoka 411-8540, Japan.
Development. 2007 Jan;134(1):77-83. doi: 10.1242/dev.02697. Epub 2006 Nov 30.
The mouse Nanos proteins, Nanos2 and Nanos3, are required for germ cell development and share a highly conserved zinc-finger domain. The expression patterns of these factors during development, however, differ from each other. Nanos3 expression in the mouse embryo commences in the primordial germ cells (PGCs) just after their formation, and a loss of this protein results in the germ cell-less phenotype in both sexes. By contrast, Nanos2 expression begins only in male PGCs after their entry into the genital ridge and a loss of this protein results in a male germ cell deficiency, irrespective of the co-expression of Nanos3 in these cells. These results indicate that these two Nanos proteins have distinct functions, which depend on the time and place of their expression. To further elucidate this, we have generated transgenic mouse lines that express Nanos2 under the control of the Oct4DeltaPE promoter and examined Nanos2 function in a Nanos3-null genetic background. We find that ectopically produced Nanos2 protein rescues the Nanos3-null defects, because the germ cells fully develop in both sexes in the transgenic mice. This result indicates that Nanos2 can substitute for Nanos3 during early PGC development. By contrast, our current data show that Nanos3 does not rescue the defects in Nanos2-null mice. Our present findings thus indicate that there are redundant functions of the Nanos proteins in early PGC development, but that Nanos2 has a distinct function during male germ cell development in the mouse.
小鼠的Nanos蛋白,即Nanos2和Nanos3,是生殖细胞发育所必需的,且共享一个高度保守的锌指结构域。然而,这些因子在发育过程中的表达模式彼此不同。小鼠胚胎中的Nanos3表达在原始生殖细胞(PGC)形成后立即开始,缺失这种蛋白会导致两性均出现无生殖细胞的表型。相比之下,Nanos2仅在雄性PGC进入生殖嵴后才开始表达,缺失这种蛋白会导致雄性生殖细胞缺陷,无论这些细胞中Nanos3是否共表达。这些结果表明这两种Nanos蛋白具有不同的功能,这取决于它们表达的时间和位置。为了进一步阐明这一点,我们构建了在Oct4DeltaPE启动子控制下表达Nanos2的转基因小鼠品系,并在Nanos3基因缺失的遗传背景下研究Nanos2的功能。我们发现异位产生的Nanos2蛋白挽救了Nanos3基因缺失的缺陷,因为转基因小鼠两性的生殖细胞都能完全发育。这一结果表明,在早期PGC发育过程中,Nanos2可以替代Nanos3。相比之下,我们目前的数据表明,Nanos3不能挽救Nanos2基因缺失小鼠的缺陷。我们目前的研究结果因此表明,Nanos蛋白在早期PGC发育中存在冗余功能,但Nanos2在小鼠雄性生殖细胞发育过程中具有独特的功能。