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Reggies/flotillins regulate E-cadherin–mediated cell contact formation by affecting EGFR trafficking

机译:Reggie / flotillins通过影响EGFR转运来调节E-钙黏着蛋白介导的细胞接触形成

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The reggie/flotillin proteins are implicated in membrane trafficking and, together with the cellular prion protein (PrP), in the recruitment of E-cadherin to cell contact sites. Here, we demonstrate that reggies, as well as PrP down-regulation, in epithelial A431 cells cause overlapping processes and abnormal formation of adherens junctions (AJs). This defect in cell adhesion results from reggie effects on Src tyrosine kinases and epidermal growth factor receptor (EGFR): loss of reggies reduces Src activation and EGFR phosphorylation at residues targeted by Src and c-cbl and leads to increased surface exposure of EGFR by blocking its internalization. The prolonged EGFR signaling at the plasma membrane enhances cell motility and macropinocytosis, by which junction-associated E-cadherin is internalized and recycled back to AJs. Accordingly, blockage of EGFR signaling or macropinocytosis in reggie-deficient cells restores normal AJ formation. Thus, by promoting EGFR internalization, reggies restrict the EGFR signaling involved in E-cadherin macropinocytosis and recycling and regulate AJ formation and dynamics and thereby cell adhesion.
机译:reggie / flotillin蛋白与膜运输有关,并与细胞ion病毒蛋白(PrP)有关,将E-cadherin募集到细胞接触部位。在这里,我们证明了上皮A431细胞中的瑞吉氏菌以及PrP下调会导致重叠过程和粘附连接(AJs)异常形成。细胞粘附的这种缺陷是由于对Src酪氨酸激酶和表皮生长因子受体(EGFR)的调节作用所致:猪的损失减少了Src和c-cbl靶向的残基的Src活化和EGFR磷酸化,并通过阻断而导致EGFR表面暴露增加它的内在化。在质膜上延长的EGFR信号传导增强了细胞运动性和巨胞吞作用,通过这种作用,结合相关的E-钙黏着蛋白被内化并循环回AJs。因此,在缺乏免疫力的细胞中EGFR信号传导或巨胞饮的阻断可恢复正常的AJ形成。因此,通过促进EGFR的内在化,雷吉斯限制了参与E-钙粘蛋白大胞饮作用和再循环的EGFR信号传导,并调节AJ的形成和动力学,从而调节细胞粘附。

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