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首页> 外文期刊>Molecular biology of the cell >MgcRacGAP restricts active RhoA at the cytokinetic furrow and both RhoA and Rac1 at cell-cell junctions in epithelial cells
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MgcRacGAP restricts active RhoA at the cytokinetic furrow and both RhoA and Rac1 at cell-cell junctions in epithelial cells

机译:MgcRacGAP限制上皮细胞在细胞动力学犁沟中的活性RhoA以及RhoA和Rac1两者

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摘要

Localized activation of Rho GTPases is essential for multiple cellular functions, including cytokinesis and formation and maintenance of cell-cell junctions. Although MgcRac-GAP (Mgc) is required for spatially confined RhoA-GTP at the equatorial cortex of dividing cells, both the target specificity of Mgc's GAP activity and the involvement of phosphorylation of Mgc at Ser-386 are controversial. In addition, Mgc's function at cell-cell junctions remains unclear. Here, using gastrula-stage Xenopus laevis embryos as a model system, we examine Mgc's role in regulating localized RhoA-GTP and Rac1-GTP in the intact vertebrate epithelium. We show that Mgc's GAP activity spatially restricts accumulation of both RhoA-GTP and Rac1-GTP in epithelial cells-RhoA at the cleavage furrow and RhoA and Rac1 at cell-cell junctions. Phosphorylation at Ser-386 does not switch the specificity of Mgc's GAP activity and is not required for successful cytokinesis. Furthermore, Mgc regulates adherens junction but not tight junction structure, and the ability to regulate adherens junctions is dependent on GAP activity and signaling via the RhoA pathway. Together these results indicate that Mgc's GAP activity down-regulates the active populations of RhoA and Rac1 at localized regions of epithelial cells and is necessary for successful cytokinesis and cell-cell junction structure.
机译:Rho GTPases的局部激活对于多种细胞功能至关重要,包括胞质分裂以及细胞与细胞连接的形成和维持。尽管在分裂细胞的赤道皮层空间限制RhoA-GTP需要MgcRac-GAP(Mgc),但Mgc的GAP活性的靶标特异性和Mgc在Ser-386的磷酸化均涉及争议。此外,Mgc在细胞-细胞连接处的功能仍不清楚。在这里,使用胃阶段非洲爪蟾胚胎作为模型系统,我们检查了Mgc在调节完整脊椎动物上皮中的局部RhoA-GTP和Rac1-GTP中的作用。我们显示,Mgc的GAP活性在空间上限制了RhoA-GTP和Rac1-GTP在卵裂沟的上皮细胞RhoA和在细胞间连接处的RhoA和Rac1的积累。 Ser-386的磷酸化作用不会改变Mgc的GAP活性的特异性,成功的胞质分裂也不是必需的。此外,Mgc调节粘附连接而不是紧密连接结构,调节粘附连接的能力取决于GAP活性和通过RhoA途径的信号传导。这些结果共同表明,Mgc的GAP活性下调了上皮细胞局部区域的RhoA和Rac1的活性种群,并且对于成功的胞质分裂和细胞-细胞连接结构是必需的。

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