Key result
Rho-specific GEFs Syx and TEM4 drive endothelial junction maturation and barrier function by supporting RhoA.
Why the study?
The mechanisms by which Rho GEFs selectively activate RhoA and downstream effectors to regulate endothelial junction formation and barrier function require further elucidation.
Key points are not available for this paper at this time.
Design
Review article
No immediate clinical impact on vascular permeability; leaves open targeted RhoA-GEF modulation in future studies.
Rho GTPases are cytoskeleton-regulating proteins that mediate the formation of intercellular junctions. Their localized activation by Rho GEFs (guanine-nucleotide exchange factors) and the selective activation of downstream effectors have emerged as areas of active research in the cell adhesion field. We reported recently that the Rho-specific GEFs Syx (Synectin-binding RhoA exchange factor) and TEM4 (Tumor Endothelial Marker 4) are both essential for endothelial junction maturation and barrier function. Syx is recruited to cell contacts via its C-terminal PDZ binding motif and it's interaction with Mupp1 and the Crumbs polarity complex, while the junctional localization of TEM4 requires it's N-terminal domain and interaction with the cadherin-catenin complex. Our findings support multiple roles for RhoA in junction formation and maintenance. They also suggest that selective coupling of RhoA activation to Dia1 and/or ROCK signaling is critical for determining endothelial junction integrity.
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Ngok et al. (2013) reported a review. The Rho-specific GEFs Syx and TEM4 are essential for endothelial junction maturation and barrier function, supporting multiple roles for RhoA in junction formation and maintenance.
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