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微管动力学和Rac-1信号传导独立调节肺上皮细胞的屏障功能。

Microtubule dynamics and Rac-1 signaling independently regulate barrier function in lung epithelial cells.

作者信息

Lorenowicz Magdalena J, Fernandez-Borja Mar, van Stalborch Anne-Marieke D, van Sterkenburg Marian A J A, Hiemstra Pieter S, Hordijk Peter L

机构信息

Sanquin Research and Landsteiner Laboratory, Academic Medical Centre, Univ. of Amsterdam, Plesmanlaan 125, 1066 CX Amsterdam, The Netherlands.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2007 Nov;293(5):L1321-31. doi: 10.1152/ajplung.00443.2006. Epub 2007 Sep 7.

Abstract

Cadherin-mediated cell-cell adhesion controls the morphology and function of epithelial cells and is a critical component of the pathology of chronic inflammatory disorders. Dynamic interactions between cadherins and the actin cytoskeleton are required for stable cell-cell contact. Besides actin, microtubules also target intercellular, cadherin-based junctions and contribute to their formation and stability. Here, we studied the role of microtubules in conjunction with Rho-like GTPases in the regulation of lung epithelial barrier function using real-time monitoring of transepithelial electrical resistance. Unexpectedly, we found that disruption of microtubules promotes epithelial cell-cell adhesion. This increase in epithelial barrier function is accompanied by the accumulation of beta-catenin at cell-cell junctions, as detected by immunofluorescence. Moreover, we found that the increase in cell-cell contact, induced by microtubule depolymerization, requires signaling through a RhoA/Rho kinase pathway. The Rac-1 GTPase counteracts this pathway, because inhibition of Rac-1 signaling rapidly promotes epithelial barrier function, in a microtubule- and RhoA-independent fashion. Together, our data suggest that microtubule-RhoA-mediated signaling and Rac-1 control lung epithelial integrity through counteracting independent pathways.

摘要

钙黏蛋白介导的细胞间黏附控制上皮细胞的形态和功能,并且是慢性炎症性疾病病理学的关键组成部分。钙黏蛋白与肌动蛋白细胞骨架之间的动态相互作用是稳定细胞间接触所必需的。除了肌动蛋白,微管也靶向细胞间基于钙黏蛋白的连接,并有助于其形成和稳定。在这里,我们使用跨上皮电阻的实时监测,研究了微管与Rho样GTP酶共同在调节肺上皮屏障功能中的作用。出乎意料的是,我们发现微管的破坏促进上皮细胞间黏附。如通过免疫荧光检测到的,上皮屏障功能的这种增加伴随着β-连环蛋白在细胞间连接处的积累。此外,我们发现由微管解聚诱导的细胞间接触增加需要通过RhoA/Rho激酶途径进行信号传导。Rac-1 GTP酶抵消了该途径,因为抑制Rac-1信号传导以微管和RhoA独立的方式迅速促进上皮屏障功能。总之,我们的数据表明微管-RhoA介导的信号传导和Rac-1通过抵消独立途径来控制肺上皮的完整性。

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