A local VE-cadherin and Trio-based signaling complex stabilizes endothelial junctions through Rac1
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| Publication date | 2015 |
| Journal | Journal of Cell Science |
| Volume | Issue number | 128 | 16 |
| Pages (from-to) | 3041-3054 |
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| Abstract |
Endothelial cell-cell junctions maintain a restrictive barrier that is tightly regulated to allow dynamic responses to permeability-inducing angiogenic factors as well as inflammatory agents and adherent leukocytes. The ability of these stimuli to transiently remodel adherens junctions (AJs) depends on Rho-GTPase-controlled cytoskeletal rearrangements. How activity of Rho-GTPases is spatio-temporally controlled at endothelial AJs by guanine-nucleotide exchange factors (GEFs) is incompletely understood. Here, we identify a crucial role for the Rho-GEF Trio in stabilizing VE-cadherin-based junctions. Trio interacts with VE-cadherin and locally activates Rac1 at AJs during nascent contact formation, assessed using a novel FRET-based Rac1 biosensor and biochemical assays. The Rac-GEF domain of Trio is responsible for remodeling of junctional actin from radial to cortical actin bundles, a critical step for junction stabilization. This promotes the formation of linear AJs and increases endothelial monolayer resistance. Collectively, our data show the importance of spatio-temporal regulation of the actin cytoskeleton through Trio and Rac1 at VE-cadherin-based cell-cell junctions to maintain the endothelial barrier.
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| Document type | Article |
| Note | With supplemental figures. - Erratum in Journal of Cell Science, vol. 128 no. 18. |
| Language | English |
| Published at | https://doi.org/10.1242/jcs.168674 |
| Other links | http://dx.doi.org/10.1242/jcs.179424 |
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A local VE-cadherin
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