Columbia Center for Human Development, Department of Medicine, Columbia University Medical Center, New York, United States.
Department of Genetics and Development, Columbia University Medical Center, New York, United States.
Elife. 2019 Oct 21;8:e50487. doi: 10.7554/eLife.50487.
Notch signaling regulates cell fate selection during development in multiple organs including the lung. Previous studies on the role of Notch in the lung focused mostly on Notch pathway core components or receptor-specific functions. It is unclear, however, how Jagged or Delta-like ligands collectively or individually (Jag1, Jag2, Dll1, Dll4) influence differentiation of airway epithelial progenitors. Using mouse genetic models we show major differences in Jag and Dll in regulation and establishment of cell fate. Jag ligands had a major impact in balancing distinct cell populations in conducting airways, but had no role in the establishment of domains and cellular abundance in the neuroendocrine (NE) microenvironment. Surprisingly, Dll ligands were crucial in restricting cell fate and size of NE bodies and showed an overlapping role with Jag in differentiation of NE-associated secretory (club) cells. These mechanisms may potentially play a role in human conditions that result in aberrant NE differentiation, including NE hyperplasias and cancer.
Notch 信号通路在包括肺部在内的多个器官的发育过程中调节细胞命运的选择。先前关于 Notch 在肺部中的作用的研究主要集中在 Notch 途径的核心组成部分或受体特异性功能上。然而,Jagged 或 Delta-like 配体(Jag1、Jag2、Dll1、Dll4)如何集体或单独影响气道上皮祖细胞的分化尚不清楚。使用小鼠遗传模型,我们显示了 Jag 和 Dll 在调节和建立细胞命运方面的主要差异。Jag 配体在平衡传导气道中的不同细胞群体方面具有重要作用,但在神经内分泌 (NE) 微环境中建立结构域和细胞丰度方面没有作用。令人惊讶的是,Dll 配体在限制 NE 体的细胞命运和大小方面至关重要,并在 NE 相关分泌 (club) 细胞的分化中与 Jag 具有重叠作用。这些机制可能在导致异常 NE 分化的人类疾病中发挥作用,包括 NE 增生和癌症。