Vangl facilitates mesenchymal thinning during lung sacculation independently of Celsr
Paramore, S. V.; Trenado-Yuste, C.; Sharan, R.; Devenport, D.; Nelson, C. M.
Show abstract
The planar cell polarity (PCP) complex orients cytoskeletal and multicellular organization throughout vertebrate development. PCP is speculated to function in formation of the murine lung, where branching morphogenesis generates a complex tree of tubular epithelia whose distal tips expand dramatically during sacculation in preparation for gas exchange after birth. Here, using tissue-specific knockouts, we show that the PCP complex is dispensable in the airway epithelium for sacculation. Rather, we find a novel, Celsr1-independent role for the PCP component Vangl in the pulmonary mesenchyme: loss of Vangl1/2 inhibits mesenchymal thinning and expansion of the saccular epithelium. Further, loss of mesenchymal Wnt5a mimics the sacculation defects observed in Vangl2-mutant lungs, implicating mesenchymal Wnt5a/Vangl signaling as a key regulator of late lung morphogenesis. By mathematically modeling sacculation, we predict that the process of sacculation requires a fluid mesenchymal compartment. Finally, lineage-tracing and cell-shape analyses are consistent with the pulmonary mesenchyme acting as a fluid tissue, and suggest that loss of Vangl1/2 likely impacts the ability of mesenchymal cells to exchange neighbors. Our data thus uncover an explicit function for Vangl and the pulmonary mesenchyme during late lung morphogenesis to actively shape the saccular epithelium.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Plasticity in airway smooth muscle differentiation during mouse lung development 98%
- Epithelial Vegfa specifies a distinct endothelial population in the mouse lung 96%
- The mesodermal source of fibronectin is required for heart morphogenesis and cardiac outflow tract elongation by regulating cell shape, polarity, and mechanotransduction in the second heart field 94%
Similar papers in this journal
- Morphogenic, molecular, and cellular adaptations for unidirectional airflow in the chicken lung 97%
- The Biomechanical Basis of Biased Epithelial Tube Elongation in Lung and Kidney Development 97%
- Gene-teratogen interactions influence the penetrance of birth defects by altering Hedgehog signaling strength 94%
Similar papers in this journal
- Hippo signaling differentially regulates distal progenitor subpopulations and their transitional states to construct the mammalian lungs 96%
- Alveolar cell fate selection and lifelong maintenance of AT2 cells by FGF signaling 95%
- Cell fate specification during respiratory development requires ARID1A-containing canonical BAF complex activity 94%
Similar papers in this journal
- Stc1-expressing myofibroblasts are a developmentally distinct lineage cleared through intrinsic apoptosis in the neonatal lung 96%
- ΔNp63 drives dysplastic alveolar remodeling and restricts epithelial plasticity upon severe lung injury 95%
- ΔN-Tp63 mediates Wnt/β-catenin-induced inhibition of differentiation in basal stem cells of mucociliary epithelia 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.