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Merck
  • Budding epithelial morphogenesis driven by cell-matrix versus cell-cell adhesion.

Budding epithelial morphogenesis driven by cell-matrix versus cell-cell adhesion.

Cell (2021-06-17)
Shaohe Wang, Kazue Matsumoto, Samantha R Lish, Alexander X Cartagena-Rivera, Kenneth M Yamada
摘要

Many embryonic organs undergo epithelial morphogenesis to form tree-like hierarchical structures. However, it remains unclear what drives the budding and branching of stratified epithelia, such as in the embryonic salivary gland and pancreas. Here, we performed live-organ imaging of mouse embryonic salivary glands at single-cell resolution to reveal that budding morphogenesis is driven by expansion and folding of a distinct epithelial surface cell sheet characterized by strong cell-matrix adhesions and weak cell-cell adhesions. Profiling of single-cell transcriptomes of this epithelium revealed spatial patterns of transcription underlying these cell adhesion differences. We then synthetically reconstituted budding morphogenesis by experimentally suppressing E-cadherin expression and inducing basement membrane formation in 3D spheroid cultures of engineered cells, which required β1-integrin-mediated cell-matrix adhesion for successful budding. Thus, stratified epithelial budding, the key first step of branching morphogenesis, is driven by an overall combination of strong cell-matrix adhesion and weak cell-cell adhesion by peripheral epithelial cells.

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Roche
不含EDTA的cOmplete Mini蛋白酶抑制剂混合物, Protease Inhibitor Cocktail Tablets provided in a glass vial, Tablets provided in a glass vial
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嘌呤霉素 二盐酸盐 来源于白色链球菌, powder, BioReagent, suitable for cell culture
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转铁蛋白 人, powder, BioReagent, suitable for cell culture
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抗层粘连蛋白 兔抗, 0.5 mg/mL, affinity isolated antibody, buffered aqueous solution
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氯喹 二磷酸盐, powder or crystals, 98.5-101.0% (EP)
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