Ministry of Education Key Laboratory of Cell Proliferation and Differentiation, College of Life Sciences, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing, China.
Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, China.
EMBO J. 2019 Apr 15;38(8). doi: 10.15252/embj.2018100164. Epub 2019 Feb 8.
The generation of terminally differentiated cell lineages during organogenesis requires multiple, coordinated cell fate choice steps. However, this process has not been clearly delineated, especially in complex solid organs such as the pancreas. Here, we performed single-cell RNA-sequencing in pancreatic cells sorted from multiple genetically modified reporter mouse strains at embryonic stages E9.5-E17.5. We deciphered the developmental trajectories and regulatory strategies of the exocrine and endocrine pancreatic lineages as well as intermediate progenitor populations along the developmental pathways. Notably, we discovered previously undefined programs representing the earliest events in islet α- and β-cell lineage allocation as well as the developmental pathway of the "first wave" of α-cell generation. Furthermore, we demonstrated that repressing ERK pathway activity is essential for inducing both α- and β-lineage differentiation. This study provides key insights into the regulatory mechanisms underlying cell fate choice and stepwise cell fate commitment and can be used as a resource to guide the induction of functional islet lineage cells from stem cells .
器官发生过程中终末分化细胞谱系的产生需要多个协调的细胞命运选择步骤。然而,这个过程还没有被清楚地描绘出来,特别是在胰腺等复杂的实体器官中。在这里,我们对来自多个遗传修饰报告小鼠品系的胚胎期 E9.5-E17.5 胰腺细胞进行了单细胞 RNA 测序。我们揭示了外分泌和内分泌胰腺谱系以及发育途径中的中间祖细胞群体的发育轨迹和调控策略。值得注意的是,我们发现了以前未定义的程序,代表了胰岛 α 和 β 细胞谱系分配以及“第一波”α 细胞生成的发育途径中的最早事件。此外,我们证明抑制 ERK 途径活性对于诱导 α 和 β 谱系分化是必不可少的。这项研究为细胞命运选择和逐步细胞命运决定的调控机制提供了重要的见解,并可作为指导从干细胞诱导功能性胰岛谱系细胞的资源。