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DDR1/E-cadherin complex regulates the activation of DDR1 and cell spreading.

机译:DDR1 / E-钙粘着蛋白复合物调节DDR1的激活和细胞扩散。

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摘要

Discoidin domain receptors (DDRs) 1 and 2, collagen receptors, regulate cell adhesion and a broad range of cell behavior. Their adhesion-dependent regulation of signaling associated with adhesion proteins has not been elucidated. We report a novel mechanism: the cross talk of DDR1 and E-cadherin negatively and adhesion dependently regulated both DDR1 activity and DDR1-suppressed cell spreading. E-cadherin forms complexes with both DDR1 isoforms (a and b). E-cadherin regulates DDR1 activity associated with the cell-junction complexes formed between DDR1 and E-cadherin. These complexes are formed independently of DDR1 activation and of beta-catenin and p120-catenin binding to E-cadherin; they are ubiquitous in epithelial cells. Small interfering RNA-mediated gene silencing of E-cadherin restores both DDR1 activity and DDR1-suppressed cell spreading and increases the apically and basally located DDR1 in E-cadherin-null cells. We conclude that E-cadherin-mediated adhesions decrease DDR1 activity, which subsequently eliminates DDR1-suppressed cell spreading, by sequestering DDR1 to cell junctions, which prevents its contact with collagen ligand.
机译:Discoidin域受体(DDRs)1和2,胶原蛋白受体调节细胞粘附和广泛的细胞行为。还没有阐明它们对与粘附蛋白有关的信号传导的粘附依赖性调节。我们报告了一个新的机制:DDR1和E-钙粘蛋白的负面影响和粘附的相互依赖调节DDR1活性和DDR1抑制细胞扩散。 E-钙粘着蛋白与两个DDR1亚型(a和b)形成复合物。 E-钙粘蛋白调节与DDR1和E-钙粘蛋白之间形成的细胞连接复合物相关的DDR1活性。这些复合物的形成独立于DDR1激活以及β-catenin和p120-catenin与E-cadherin的结合。它们在上皮细胞中无处不在。 E-钙粘着蛋白的小干扰RNA介导的基因沉默可恢复DDR1活性和DDR1抑制的细胞扩散,并增加E-钙粘着蛋白无效细胞的顶端和基端位置的DDR1。我们得出的结论是,E-钙黏着蛋白介导的粘附降低了DDR1的活性,从而通过将DDR1隔离到细胞连接处而消除了DDR1抑制的细胞扩散,从而阻止了它与胶原配体的接触。

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