Mohammed Hisham, Hernando-Herraez Irene, Savino Aurora, Scialdone Antonio, Macaulay Iain, Mulas Carla, Chandra Tamir, Voet Thierry, Dean Wendy, Nichols Jennifer, Marioni John C, Reik Wolf
Epigenetics Programme, Babraham Institute, Cambridge CB22 3AT, UK.
EMBL-European Bioinformatics Institute (EMBL-EBI), Wellcome Genome Campus, Cambridge CB10 1SD, UK; Wellcome Trust Sanger Institute, Single-Cell Genomics Centre, Cambridge CB10 1SA, UK.
Cell Rep. 2017 Aug 1;20(5):1215-1228. doi: 10.1016/j.celrep.2017.07.009.
The mouse inner cell mass (ICM) segregates into the epiblast and primitive endoderm (PrE) lineages coincident with implantation of the embryo. The epiblast subsequently undergoes considerable expansion of cell numbers prior to gastrulation. To investigate underlying regulatory principles, we performed systematic single-cell RNA sequencing (seq) of conceptuses from E3.5 to E6.5. The epiblast shows reactivation and subsequent inactivation of the X chromosome, with Zfp57 expression associated with reactivation and inactivation together with other candidate regulators. At E6.5, the transition from epiblast to primitive streak is linked with decreased expression of polycomb subunits, suggesting a key regulatory role. Notably, our analyses suggest elevated transcriptional noise at E3.5 and within the non-committed epiblast at E6.5, coinciding with exit from pluripotency. By contrast, E6.5 primitive streak cells became highly synchronized and exhibit a shortened G1 cell-cycle phase, consistent with accelerated proliferation. Our study systematically charts transcriptional noise and uncovers molecular processes associated with early lineage decisions.
小鼠内细胞团(ICM)在胚胎着床时分离为上胚层和原始内胚层(PrE)谱系。随后,上胚层在原肠胚形成之前经历了细胞数量的显著扩增。为了研究潜在的调控原则,我们对E3.5至E6.5的胚胎进行了系统的单细胞RNA测序(seq)。上胚层显示出X染色体的重新激活和随后的失活,Zfp57的表达与重新激活和失活以及其他候选调节因子相关。在E6.5时,从上胚层到原条的转变与多梳亚基表达的降低有关,表明其具有关键的调节作用。值得注意的是,我们的分析表明,在E3.5以及E6.5未分化的上胚层中,转录噪声升高,这与多能性的退出相吻合。相比之下,E6.5的原条细胞变得高度同步,并表现出缩短的G1细胞周期阶段,这与加速增殖一致。我们的研究系统地描绘了转录噪声,并揭示了与早期谱系决定相关的分子过程。