Developmental Biology Program, Sloan Kettering Institute, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.
Biol Open. 2021 May 15;10(5). doi: 10.1242/bio.058741. Epub 2021 May 7.
During early mammalian development, the pluripotent cells of the embryo are exposed to a combination of signals that drive exit from pluripotency and germ layer differentiation. At the same time, a small population of pluripotent cells give rise to the primordial germ cells (PGCs), the precursors of the sperm and egg, which pass on heritable genetic information to the next generation. Despite the importance of PGCs, it remains unclear how they are first segregated from the soma, and if this involves distinct responses to their signaling environment. To investigate this question, we mapped BMP, MAPK and WNT signaling responses over time in PGCs and their surrounding niche in vitro and in vivo at single-cell resolution. We showed that, in the mouse embryo, early PGCs exhibit lower BMP and MAPK responses compared to neighboring extraembryonic mesoderm cells, suggesting the emergence of distinct signaling regulatory mechanisms in the germline versus soma. In contrast, PGCs and somatic cells responded comparably to WNT, indicating that this signal alone is not sufficient to promote somatic differentiation. Finally, we investigated the requirement of a BMP response for these cell fate decisions. We found that cell lines with a mutation in the BMP receptor (Bmpr1a-/-), which exhibit an impaired BMP signaling response, can efficiently generate PGC-like cells revealing that canonical BMP signaling is not cell autonomously required to direct PGC-like differentiation.
在哺乳动物早期胚胎发育过程中,胚胎的多能细胞暴露于一系列信号中,这些信号促使多能细胞退出并分化为胚层。与此同时,一小部分多能细胞产生原始生殖细胞(PGC),即精子和卵子的前体,它们将可遗传的遗传信息传递给下一代。尽管 PGC 非常重要,但目前尚不清楚它们最初是如何从体细胞中分离出来的,以及这是否涉及到它们对信号环境的不同反应。为了研究这个问题,我们以单细胞分辨率,在体外和体内,随时间追踪了 PGC 及其周围小生境中的 BMP、MAPK 和 WNT 信号反应。我们表明,在小鼠胚胎中,早期 PGC 与邻近的胚外中胚层细胞相比,表现出较低的 BMP 和 MAPK 反应,这表明生殖系与体细胞之间出现了不同的信号调控机制。相比之下,PGC 和体细胞对 WNT 的反应相当,这表明仅这一信号不足以促进体细胞分化。最后,我们研究了 BMP 反应对这些细胞命运决定的要求。我们发现,具有 BMP 受体(Bmpr1a-/-)突变的细胞系表现出受损的 BMP 信号反应,它们可以有效地生成 PGC 样细胞,这表明经典的 BMP 信号传导不是自主地指导 PGC 样分化所必需的。