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Role of E-cadherin in epithelial architecture maintenance

机译:E-钙粘蛋白在上皮结构维持中的作用

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Morphogenesis and architecture of a developing epithelium is controlled by both cell shape and contacts, mediated by spatially and temporally regulated cell adhesion molecules. The authors study if E-cadherin functions as a key factor of epithelial adhesion and epidermal architecture in vivo. They apply whole-mount digital deconvolution microscopy to evaluate three-dimensional (3D) E-cadherin expression during skin morphogenesis of Rhinella arenarum and in a cell adhesion alteration model. Results show morphogenetic changes in the 3D E-cadherin spatiotemporal expression pattern correlated with the increase of E-cadherin and in the number of cells with hexagonal geometry. Alterations in junctionprotein phosphorylation showed drastic loss of E-cadherin and β-catenin in cell-cell contacts and the increase of cytoplasm and nuclear β-catenin in epidermis, suggesting the activation of the β-catenin signal pathway. Surprisingly, no changes in cell shape and skin architecture were registered, suggesting that epidermal E-cadherin appears to be involved in signaling rather than cell contact maintenance in vivo.
机译:发育中的上皮细胞的形态发生和结构受细胞形状和接触的控制,受空间和时间调控的细胞粘附分子介导。作者研究了E-钙粘蛋白是否是体内上皮粘附和表皮结构的关键因素。他们应用整装式数字反褶积显微镜技术来评估莱茵兰腔皮肤的形态发生过程中和细胞粘附改变模型中的三维(3D)E-钙粘着蛋白表达。结果显示3D E-cadherin时空表达模式的形态发生变化与E-cadherin的增加以及具有六边形几何形状的细胞数量有关。接合蛋白磷酸化的改变显示细胞间接触中E-钙粘蛋白和β-catenin的大量丧失以及表皮中细胞质和核β-catenin的增加,表明β-catenin信号通路的激活。出人意料的是,未观察到细胞形状和皮肤结构的变化,表明表皮E-钙粘着蛋白似乎参与体内的信号传导而非细胞接触维持。

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