Goodwin Katharine, Jaslove Jacob M, Tao Hirotaka, Zhu Min, Hopyan Sevan, Nelson Celeste M
Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544, USA.
Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.
iScience. 2022 Jan 29;25(3):103838. doi: 10.1016/j.isci.2022.103838. eCollection 2022 Mar 18.
Smooth muscle guides the morphogenesis of several epithelia during organogenesis, including the mammalian airways. However, it remains unclear how airway smooth muscle differentiation is spatiotemporally patterned and whether it originates from transcriptionally distinct mesenchymal progenitors. Using single-cell RNA-sequencing of embryonic mouse lungs, we show that the pulmonary mesenchyme contains a continuum of cell identities, but no transcriptionally distinct progenitors. Transcriptional variability correlates with spatially distinct sub-epithelial and sub-mesothelial mesenchymal compartments that are regulated by Wnt signaling. Live-imaging and tension-sensors reveal compartment-specific migratory behaviors and cortical forces and show that sub-epithelial mesenchyme contributes to airway smooth muscle. Reconstructing differentiation trajectories reveals early activation of cytoskeletal and Wnt signaling genes. Consistently, Wnt activation induces the earliest stages of smooth muscle differentiation and local accumulation of mesenchymal F-actin, which influences epithelial morphology. Our single-cell approach uncovers the principles of pulmonary mesenchymal patterning and identifies a morphogenetically active mesenchymal layer that sculpts the airway epithelium.
在器官发生过程中,平滑肌引导包括哺乳动物气道在内的多种上皮的形态发生。然而,气道平滑肌分化如何在时空上形成模式,以及它是否起源于转录上不同的间充质祖细胞,仍不清楚。通过对胚胎小鼠肺进行单细胞RNA测序,我们发现肺间充质包含一系列连续的细胞身份,但没有转录上不同的祖细胞。转录变异性与由Wnt信号通路调节的空间上不同的上皮下和间皮下间充质隔室相关。实时成像和张力传感器揭示了隔室特异性的迁移行为和皮质力,并表明上皮下间充质对气道平滑肌有贡献。重建分化轨迹揭示了细胞骨架和Wnt信号基因的早期激活。一致地,Wnt激活诱导平滑肌分化的最早阶段和间充质F-肌动蛋白的局部积累,这影响上皮形态。我们的单细胞方法揭示了肺间充质模式形成的原理,并确定了一个对形态发生有活性的间充质层,它塑造了气道上皮。