The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions
Cell-cell adhesion of endothelial tissue, mediated by the adhesion molecule VE-cadherin, is tightly regulated. Here the authors show that the F-BAR domain protein pacsin2 is recruited to the trailing end of mechanically unbalanced Focal Adherens Junctions, where it inhibits internalization of VE-cad...
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Nature Portfolio
2016
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oai:doaj.org-article:39489597f19d45109896f9a7f11b9fb82021-12-02T15:35:25ZThe F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions10.1038/ncomms122102041-1723https://doaj.org/article/39489597f19d45109896f9a7f11b9fb82016-07-01T00:00:00Zhttps://doi.org/10.1038/ncomms12210https://doaj.org/toc/2041-1723Cell-cell adhesion of endothelial tissue, mediated by the adhesion molecule VE-cadherin, is tightly regulated. Here the authors show that the F-BAR domain protein pacsin2 is recruited to the trailing end of mechanically unbalanced Focal Adherens Junctions, where it inhibits internalization of VE-cadherin and protects cell-cell adhesion.Yvonne L. DorlandTsveta S. MalinovaAnne-Marieke D. van StalborchAdam G. GrieveDaphne van GeemenNicolette S. JansenBart-Jan de KreukKalim NawazJeroen KoleDirk GeertsRené J. P. MustersJohan de RooijPeter L. HordijkStephan HuveneersNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-18 (2016) |
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Science Q Yvonne L. Dorland Tsveta S. Malinova Anne-Marieke D. van Stalborch Adam G. Grieve Daphne van Geemen Nicolette S. Jansen Bart-Jan de Kreuk Kalim Nawaz Jeroen Kole Dirk Geerts René J. P. Musters Johan de Rooij Peter L. Hordijk Stephan Huveneers The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions |
description |
Cell-cell adhesion of endothelial tissue, mediated by the adhesion molecule VE-cadherin, is tightly regulated. Here the authors show that the F-BAR domain protein pacsin2 is recruited to the trailing end of mechanically unbalanced Focal Adherens Junctions, where it inhibits internalization of VE-cadherin and protects cell-cell adhesion. |
format |
article |
author |
Yvonne L. Dorland Tsveta S. Malinova Anne-Marieke D. van Stalborch Adam G. Grieve Daphne van Geemen Nicolette S. Jansen Bart-Jan de Kreuk Kalim Nawaz Jeroen Kole Dirk Geerts René J. P. Musters Johan de Rooij Peter L. Hordijk Stephan Huveneers |
author_facet |
Yvonne L. Dorland Tsveta S. Malinova Anne-Marieke D. van Stalborch Adam G. Grieve Daphne van Geemen Nicolette S. Jansen Bart-Jan de Kreuk Kalim Nawaz Jeroen Kole Dirk Geerts René J. P. Musters Johan de Rooij Peter L. Hordijk Stephan Huveneers |
author_sort |
Yvonne L. Dorland |
title |
The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions |
title_short |
The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions |
title_full |
The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions |
title_fullStr |
The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions |
title_full_unstemmed |
The F-BAR protein pacsin2 inhibits asymmetric VE-cadherin internalization from tensile adherens junctions |
title_sort |
f-bar protein pacsin2 inhibits asymmetric ve-cadherin internalization from tensile adherens junctions |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/39489597f19d45109896f9a7f11b9fb8 |
work_keys_str_mv |
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