Javali Alok, Misra Aritra, Leonavicius Karolis, Acharyya Debalina, Vyas Bhakti, Sambasivan Ramkumar
Institute for Stem Cell Biology and Regenerative Medicine, GKVK Campus, Bellary Road, Bengaluru 560065, India.
National Centre for Biological Sciences, TIFR, GKVK Campus, Bellary Road, Bengaluru 560065, India.
Development. 2017 Dec 15;144(24):4522-4529. doi: 10.1242/dev.153262. Epub 2017 Oct 30.
Elongation of the body axis is a key aspect of body plan development. Bipotential neuromesoderm progenitors (NMPs) ensure axial growth of embryos by contributing both to the spinal cord and mesoderm. The current model for the mechanism controlling NMP deployment invokes Tbx6, a T-box factor, to drive mesoderm differentiation of NMPs. Here, we identify a new population of Tbx6 cells in a subdomain of the NMP niche in mouse embryos. Based on co-expression of a progenitor marker, Sox2, we identify this population as representing a transient cell state in the mesoderm-fated NMP lineage. Genetic lineage tracing confirms the presence of the NMP cell state. Furthermore, we report a novel aspect of the documented mutant phenotype, namely an increase from two to four ectopic neural tubes, corresponding to the switch in NMP niche, thus highlighting the importance of function in NMP fate decision. This study emphasizes the function of Tbx6 as a bistable switch that turns mesoderm fate 'on' and progenitor state 'off', and thus has implications for the molecular mechanism driving NMP fate choice.
体轴的延长是身体发育蓝图的一个关键方面。双潜能神经中胚层祖细胞(NMPs)通过对脊髓和中胚层都有贡献来确保胚胎的轴向生长。目前控制NMPs分布机制的模型调用Tbx6(一种T盒因子)来驱动NMPs的中胚层分化。在这里,我们在小鼠胚胎的NMP生态位的一个亚区域中鉴定出一个新的Tbx6细胞群体。基于祖细胞标志物Sox2的共表达,我们将这个群体鉴定为代表中胚层命运的NMP谱系中的一种短暂细胞状态。遗传谱系追踪证实了NMP细胞状态的存在。此外,我们报道了已记录的突变体表型的一个新方面,即异位神经管从两个增加到四个,这与NMP生态位的转变相对应,从而突出了其功能在NMP命运决定中的重要性。这项研究强调了Tbx6作为一个双稳态开关的功能,它开启中胚层命运并关闭祖细胞状态,因此对驱动NMP命运选择的分子机制具有启示意义。