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Rab11 in recycling endosomes regulates the sorting and basolateral transport of E-cadherin

机译:回收内体中的Rab11调节E-钙粘蛋白的分选和基底外侧运输

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E-cadherin plays an essential role in cell polarity and cell-cell adhesion; however, the pathway for delivery of E-cadherin to the basolateral membrane of epithelial cells has not been fully characterized. We first traced the post-Golgi, exocytic transport of GFP-tagged E-cadherin (Ecad-GFP) in unpolarized cells. In live cells, Ecad-GFP was found to exit the Golgi complex in pleiomorphic tubulovesicular carriers, which, instead of moving directly to the cell surface, most frequently fused with an intermediate compartment, subsequently identified as a Rab11-positive recycling endosome. In MDCK cells, basolateral targeting of E-cadherin relies on a dileucine motif. Both E-cadherin and a targeting mutant, Delta S1-E-cadherin, colocalized with Rab11 and fused with the recycling endosome before diverging to basolateral or apical membranes, respectively. In polarized and unpolarized cells, coexpression of Rab11 mutants disrupted the cell surface delivery of E-cadherin and caused its mistargeting to the apical membrane, whereas apical Delta S1-E-cadherin was unaffected. We thus demonstrate a novel pathway for Rab11 dependent, dileucine-mediated, mu 1B-independent sorting and basolateral trafficking, exemplified by E-cadherin. The recycling endosome is identified as an intermediate compartment for the post-Golgi trafficking and exocytosis of E-cadherin, with a potentially important role in establishing and maintaining cadherin-based adhesion.
机译:E-钙粘着蛋白在细胞极性和细胞间粘附中起着至关重要的作用。然而,尚未完全鉴定出将E-钙粘着蛋白递送至上皮细胞的基底外侧膜的途径。我们首先追踪了高尔基后,GFP标记的E-钙粘蛋白(Ecad-GFP)在非极化细胞中的胞外转运。在活细胞中,发现Ecad-GFP在多形肾小管状载体中离开高尔基复合体,而不是直接移动到细胞表面,最常见的是与中间区室融合,随后被鉴定为Rab11阳性回收内体。在MDCK细胞中,E-钙粘着蛋白的基底外侧靶向依赖于双亮氨酸基序。 E-钙粘着蛋白和靶向突变体Delta S1-E-钙粘着蛋白均与Rab11共定位并与回收的内体融合,然后分别扩散至基底外侧或顶膜。在极化和非极化细胞中,Rab11突变体的共表达破坏了E-cadherin的细胞表面传递并导致其错误地靶向顶膜,而顶端Delta S1-E-cadherin则不受影响。因此,我们证明了Rab11依赖,双亮氨酸介导,mu 1B独立的排序和基底外侧贩运的新型途径,以E-钙粘着蛋白为例。回收的内体被确定为高尔基后运输和E-钙粘蛋白胞吐作用的中间区隔,在建立和维持基于钙粘蛋白的粘附方面具有潜在的重要作用。

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