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首页> 外文期刊>Molecular biology of the cell >MgcRacGAP interacts with cingulin and paracingulin to regulate Rac1 activation and development of the tight junction barrier during epithelial junction assembly
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MgcRacGAP interacts with cingulin and paracingulin to regulate Rac1 activation and development of the tight junction barrier during epithelial junction assembly

机译:MgcRacGAP与cingulin和paracingulin相互作用,以调节Rac1激活和上皮连接组装过程中紧密连接屏障的发育

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The regulation of Rho-family GTPases is crucial to direct the formation of cell–cell junctions and tissue barriers. Cingulin (CGN) and paracingulin (CGNL1) control RhoA activation in epithelial cells by interacting with RhoA guanidine exchange factors. CGNL1 depletion also inhibits Rac1 activation during junction assembly. Here we show that, unexpectedly, Madin–Darby canine kidney epithelial cells depleted of both CGN and CGNL1 (double-KD cells) display normal Rac1 activation and tight junction (TJ) formation, despite decreased junctional recruitment of the Rac1 activator Tiam1. The expression of the Rac1 inhibitor MgcRacGAP is decreased in double-KD cells, and the barrier development and Rac1 activation phenotypes are rescued by exogenous expression of MgcRacGAP. MgcRacGAP colocalizes with CGN and CGNL1 at TJs and forms a complex and interacts directly in vitro with CGN and CGNL1. Depletion of either CGN or CGNL1 in epithelial cells results in decreased junctional localization of MgcRacGAP but not of ECT2, a centralspindlin-interacting Rho GEF. These results provide new insight into coordination of Rho-family GTPase activities at junctions, since apical accumulation of CGN and CGNL1 at TJs during junction maturation provides a mechanism to spatially restrict down-regulation of Rac1 activation through the recruitment of MgcRacGAP.
机译:Rho家族GTP酶的调节对于指导细胞间连接和组织屏障的形成至关重要。 Cingulin(CGN)和paracingulin(CGNL1)通过与RhoA胍交换因子相互作用来控制上皮细胞中的RhoA活化。 CGNL1耗尽还抑制结组装期间的Rac1激活。在这里,我们发现,出乎意料的是,尽管Rac1激活剂Tiam1的结合募集减少,但耗尽CGN和CGNL1(双KD细胞)的Madin-Darby犬肾上皮细胞显示出正常的Rac1激活和紧密连接(TJ)形成。在双KD细胞中Rac1抑制剂MgcRacGAP的表达降低,并且通过外源表达MgcRacGAP可以挽救屏障的发育和Rac1激活表型。 MgcRacGAP在TJs与CGN和CGNL1共定位并形成复合物,并在体外与CGN和CGNL1直接相互作用。上皮细胞中CGN或CGNL1的耗尽会导致MgcRacGAP的连接定位降低,但不会与ECT2(与中央斯宾德林相互作用的Rho GEF)的连接定位降低。这些结果为接合处Rho家族GTPase活性的协调提供了新的见解,因为接合处成熟过程中TJ处CGN和CGNL1的根尖积累提供了通过募集MgcRacGAP在空间上限制Rac1激活下调的机制。

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