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首页> 外文期刊>Molecular and Cellular Biology >Distinct Rho GTPase Activities Regulate Epithelial Cell Localization of the Adhesion Molecule CEACAM1: Involvement of the CEACAM1 Transmembrane Domain
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Distinct Rho GTPase Activities Regulate Epithelial Cell Localization of the Adhesion Molecule CEACAM1: Involvement of the CEACAM1 Transmembrane Domain

机译:不同的Rho GTPase活性调节粘附分子CEACAM1的上皮细胞定位:CEACAM1跨膜结构域的参与。

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摘要

CEACAM1 is an intercellular adhesion glycoprotein. As CEACAM1 plays an important role in epithelial cell signaling and functions, we have examined its localization in epithelial cells. We have observed that distribution at cell contacts is not always seen in these cells, suggesting that CEACAM1 localization might be regulated. In Swiss 3T3 cells, the targeting of CEACAM1 at cell-cell boundaries is regulated by the Rho GTPases. In the present study, we have used the MDCK epithelial cells to characterize the effects of the Rho GTPases and their effectors on CEACAM1 intercellular targeting. Activated Cdc42 and Rac1 or their downstream effector PAK1 targeted CEACAM1 to sites of cell-cell contacts. On the other hand, neither activated RhoA nor activated Rho kinase directed CEACAM1 to cell boundaries, resulting in a condensed distribution of CEACAM1 at the cell surface. Interestingly, inhibition of this pathway resulted in CEACAM1 intercellular localization suggesting that a tightly regulated balance of Rho GTPase activities is necessary to target CEACAM1 at cell-cell boundaries. In addition, using CEACAM1 mutants and chimeric fusion constructs containing domains of the colony-stimulating factor receptor, we have shown that the transmembrane domain of CEACAM1 is responsible for the Cdc42-induced targeting at cell-cell contacts.
机译:CEACAM1是一种细胞间粘附糖蛋白。由于CEACAM1在上皮细胞的信号传导和功能中起着重要的作用,我们已经检查了它在上皮细胞中的定位。我们已经观察到在这些细胞中并不总是看到细胞接触处的分布,这表明CEACAM1的定位可能受到调节。在瑞士3T3细胞中,CEACAM1在细胞边界处的靶向受Rho GTPases调控。在本研究中,我们已经使用MDCK上皮细胞来表征Rho GTPases及其效应物对CEACAM1细胞间靶向的作用。激活的Cdc42和Rac1或它们的下游效应物PAK1将CEACAM1靶向细胞-细胞接触部位。另一方面,活化的RhoA或活化的Rho激酶均未将CEACAM1引导至细胞边界,导致CEACAM1在细胞表面的浓缩分布。有趣的是,对该途径的抑制导致CEACAM1在细胞间定位,这表明Rho GTPase活性的紧密调节平衡对于将CEACAM1靶向细胞-细胞边界是必要的。此外,使用CEACAM1突变体和包含集落刺激因子受体域的嵌合融合构建体,我们已经证明CEACAM1的跨膜域负责Cdc42诱导的细胞-细胞接触靶向。

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