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The protein tyrosine phosphatase pez is a major phosphatase of adherens junctions and dephosphorylates beta-catenin

机译:酪氨酸磷酸酶pez蛋白是粘附连接和去磷酸化β-catenin的主要磷酸酶

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Cell-cell adhesion regulates processes important in embryonal development, normal physiology, and cancer progression. It is regulated by various mechanisms including tyrosine phosphorylation. We have previously shown that the protein tyrosine phosphatase Pez is concentrated at intercellular junctions in confluent, quiescent monolayers but is nuclear in cells, lacking cell-cell, contacts. We show here with an epithelial cell model that Pez localizes to the adherens junctions in confluent monolayers. A truncation mutant lacking the catalytic domain acts as a dominant negative mutant to upregulate tyrosine phosphorylation at adherens junctions. We identified beta-catenin, a component of adherens junctions, as a substrate of Pez by a "substrate trapping" approach and by in vitro dephosphorylation with recombinant Pez. Consistent with this, ectopic expression of the dominant negative mutant caused an increase in tyrosine phosphorylation of beta-catenin, demonstrating that Pez regulates the level of tyrosine phosphorylation of adherens junction proteins, including beta-catenin. Increased tyrosine phosphorylation of adherens junction proteins has been shown to decrease cell-cell adhesion, promoting cell migration as a result. Accordingly, the dominant negative Pez mutant enhanced cell motility in an in vitro "wound" assay. This suggests that Pez is also a regulator of cell motility, most likely through its action on cell-cell adhesion. [References: 23]
机译:细胞与细胞之间的粘附调节着重要的过程,这些过程在胚胎发育,正常生理和癌症发展过程中都很重要。它受各种机制调节,包括酪氨酸磷酸化。先前我们已经表明,酪氨酸磷酸酶Pez蛋白集中在汇合的静态单层细胞间连接处,但在细胞内是核的,缺乏细胞与细胞之间的接触。我们在这里显示了上皮细胞模型,Pez定位于汇合单层中的粘附连接。缺少催化结构域的截短突变体充当显性负突变体,以在粘附连接处上调酪氨酸磷酸化。我们通过“底物捕获”方法和重组Pez的体外脱磷酸作用,将β-catenin(粘附连接的组成部分)鉴定为Pez的底物。与此相一致,显性负突变体的异位表达引起β-catenin酪氨酸磷酸化的增加,表明Pez调节粘附连接蛋白(包括β-catenin)酪氨酸磷酸化的水平。粘附连接蛋白酪氨酸磷酸化的增加已显示减少细胞间粘附,从而促进细胞迁移。因此,显性阴性Pez突变体在体外“伤口”测定中增强了细胞运动性。这表明Pez也是细胞运动的调节剂,很可能是通过其对细胞粘附的作用而实现的。 [参考:23]

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