Graham Sarah J L, Wicher Krzysztof B, Jedrusik Agnieszka, Guo Guoji, Herath Wishva, Robson Paul, Zernicka-Goetz Magdalena
Department of Physiology, Development and Neuroscience, University of Cambridge, Downing Street, Cambridge CB2 3DY, UK.
1] Developmental Cellomics Laboratory, Genome Institute of Singapore, Singapore 138672, Singapore [2] Department of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore 117543, Singapore.
Nat Commun. 2014 Dec 16;5:5667. doi: 10.1038/ncomms6667.
Pre-implantation development requires the specification and organization of embryonic and extra-embryonic lineages. The separation of these lineages takes place when asymmetric divisions generate inside and outside cells that differ in polarity, position and fate. Here we assess the global transcriptional identities of these precursor cells to gain insight into the molecular mechanisms regulating lineage segregation. Unexpectedly, this reveals that complementary components of the bone morphogenetic protein (BMP) signalling pathway are already differentially expressed after the first wave of asymmetric divisions. We investigate the role of BMP signalling by expressing dominant negative forms of Smad4 and Bmpr2, by downregulating the pathway using RNA interference against BMP ligands and by applying three different BMP inhibitors at distinct stages. This reveals that BMP signalling regulates the correct development of both extra-embryonic lineages, primitive endoderm and trophectoderm, but not the embryonic lineage, before implantation. Together, these findings indicate multiple roles of BMP signalling in the early mouse embryo.
植入前发育需要胚胎和胚外谱系的特化与组织。当不对称分裂产生极性、位置和命运不同的内部和外部细胞时,这些谱系就会分离。在这里,我们评估这些前体细胞的整体转录特征,以深入了解调节谱系分离的分子机制。出乎意料的是,这揭示了骨形态发生蛋白(BMP)信号通路的互补成分在第一波不对称分裂后就已经差异表达。我们通过表达Smad4和Bmpr2的显性负性形式、使用针对BMP配体的RNA干扰下调该信号通路以及在不同阶段应用三种不同的BMP抑制剂来研究BMP信号的作用。这表明BMP信号在植入前调节胚外谱系(原始内胚层和滋养外胚层)的正确发育,但不调节胚胎谱系。这些发现共同表明了BMP信号在早期小鼠胚胎中的多种作用。