Department of Developmental Biology and Division of Dermatology, Washington University School of Medicine, Box 8103, Saint Louis, MO 63110-1095, USA.
J Cell Sci. 2010 Jan 15;123(Pt 2):213-24. doi: 10.1242/jcs.058669.
Lung development is the result of complex interactions between four tissues: epithelium, mesenchyme, mesothelium and endothelium. We marked the lineages experiencing Notch1 activation in these four cellular compartments during lung development and complemented this analysis by comparing the cell fate choices made in the absence of RBPjkappa, the essential DNA binding partner of all Notch receptors. In the mesenchyme, RBPjkappa was required for the recruitment and specification of arterial vascular smooth muscle cells (vSMC) and for regulating mesothelial epithelial-mesenchymal transition (EMT), but no adverse affects were observed in mice lacking mesenchymal RBPjkappa. We provide indirect evidence that this is due to vSMC rescue by endothelial-mesenchymal transition (EnMT). In the epithelium, we show that Notch1 activation was most probably induced by Foxj1-expressing cells, which suggests that Notch1-mediated lateral inhibition regulates the selection of Clara cells at the expense of ciliated cells. Unexpectedly, and in contrast to Pofut1-null epithelium, Hes1 expression was only marginally reduced in RBPjkappa-null epithelium, with a corresponding minimal effect on pulmonary neuroendocrine cell fate selection. Collectively, the primary roles for canonical Notch signaling in lung development are in selection of Clara cell fate and in vSMC recruitment. These analyses suggest that the impact of gamma-secretase inhibitors on branching in vitro reflect a non-cell autonomous contribution from endothelial or vSMC-derived signals.
肺发育是上皮细胞、间充质细胞、间皮细胞和内皮细胞之间复杂相互作用的结果。我们标记了在肺发育过程中这四种细胞区室中 Notch1 激活的谱系,并通过比较在没有 Notch 受体必需的 DNA 结合伴侣 RBPjkappa 的情况下做出的细胞命运选择,对其进行了补充分析。在间充质中,RBPjkappa 对于招募和特化动脉血管平滑肌细胞(vSMC)以及调节间皮上皮-间充质转化(EMT)是必需的,但在缺乏间充质 RBPjkappa 的小鼠中没有观察到不良反应。我们提供了间接证据表明,这是由于血管内皮-间充质转化(EnMT)导致的 vSMC 拯救。在上皮中,我们表明 Notch1 激活最有可能是由表达 Foxj1 的细胞诱导的,这表明 Notch1 介导的侧向抑制调节了以牺牲纤毛细胞为代价的 Clara 细胞的选择。出乎意料的是,与 Pofut1 缺陷上皮细胞相反,RBPjkappa 缺陷上皮细胞中的 Hes1 表达仅略有降低,对肺神经内分泌细胞命运选择的影响也相应最小。总的来说,经典 Notch 信号在肺发育中的主要作用是选择 Clara 细胞命运和招募 vSMC。这些分析表明,γ-分泌酶抑制剂对体外分支的影响反映了内皮细胞或 vSMC 衍生信号的非细胞自主贡献。