Cargando…

YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development

Formation of blood vessel networks by sprouting angiogenesis is critical for tissue growth, homeostasis and regeneration. How endothelial cells arise in adequate numbers and arrange suitably to shape functional vascular networks is poorly understood. Here we show that YAP/TAZ promote stretch-induced...

Descripción completa

Detalles Bibliográficos
Autores principales: Neto, Filipa, Klaus-Bergmann, Alexandra, Ong, Yu Ting, Alt, Silvanus, Vion, Anne-Clémence, Szymborska, Anna, Carvalho, Joana R, Hollfinger, Irene, Bartels-Klein, Eireen, Franco, Claudio A, Potente, Michael, Gerhardt, Holger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5814147/
https://www.ncbi.nlm.nih.gov/pubmed/29400648
http://dx.doi.org/10.7554/eLife.31037
_version_ 1783300288005799936
author Neto, Filipa
Klaus-Bergmann, Alexandra
Ong, Yu Ting
Alt, Silvanus
Vion, Anne-Clémence
Szymborska, Anna
Carvalho, Joana R
Hollfinger, Irene
Bartels-Klein, Eireen
Franco, Claudio A
Potente, Michael
Gerhardt, Holger
author_facet Neto, Filipa
Klaus-Bergmann, Alexandra
Ong, Yu Ting
Alt, Silvanus
Vion, Anne-Clémence
Szymborska, Anna
Carvalho, Joana R
Hollfinger, Irene
Bartels-Klein, Eireen
Franco, Claudio A
Potente, Michael
Gerhardt, Holger
author_sort Neto, Filipa
collection PubMed
description Formation of blood vessel networks by sprouting angiogenesis is critical for tissue growth, homeostasis and regeneration. How endothelial cells arise in adequate numbers and arrange suitably to shape functional vascular networks is poorly understood. Here we show that YAP/TAZ promote stretch-induced proliferation and rearrangements of endothelial cells whilst preventing bleeding in developing vessels. Mechanistically, YAP/TAZ increase the turnover of VE-Cadherin and the formation of junction associated intermediate lamellipodia, promoting both cell migration and barrier function maintenance. This is achieved in part by lowering BMP signalling. Consequently, the loss of YAP/TAZ in the mouse leads to stunted sprouting with local aggregation as well as scarcity of endothelial cells, branching irregularities and junction defects. Forced nuclear activity of TAZ instead drives hypersprouting and vascular hyperplasia. We propose a new model in which YAP/TAZ integrate mechanical signals with BMP signaling to maintain junctional compliance and integrity whilst balancing endothelial cell rearrangements in angiogenic vessels.
format Online
Article
Text
id pubmed-5814147
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-58141472018-02-16 YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development Neto, Filipa Klaus-Bergmann, Alexandra Ong, Yu Ting Alt, Silvanus Vion, Anne-Clémence Szymborska, Anna Carvalho, Joana R Hollfinger, Irene Bartels-Klein, Eireen Franco, Claudio A Potente, Michael Gerhardt, Holger eLife Cell Biology Formation of blood vessel networks by sprouting angiogenesis is critical for tissue growth, homeostasis and regeneration. How endothelial cells arise in adequate numbers and arrange suitably to shape functional vascular networks is poorly understood. Here we show that YAP/TAZ promote stretch-induced proliferation and rearrangements of endothelial cells whilst preventing bleeding in developing vessels. Mechanistically, YAP/TAZ increase the turnover of VE-Cadherin and the formation of junction associated intermediate lamellipodia, promoting both cell migration and barrier function maintenance. This is achieved in part by lowering BMP signalling. Consequently, the loss of YAP/TAZ in the mouse leads to stunted sprouting with local aggregation as well as scarcity of endothelial cells, branching irregularities and junction defects. Forced nuclear activity of TAZ instead drives hypersprouting and vascular hyperplasia. We propose a new model in which YAP/TAZ integrate mechanical signals with BMP signaling to maintain junctional compliance and integrity whilst balancing endothelial cell rearrangements in angiogenic vessels. eLife Sciences Publications, Ltd 2018-02-05 /pmc/articles/PMC5814147/ /pubmed/29400648 http://dx.doi.org/10.7554/eLife.31037 Text en © 2018, Neto et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Neto, Filipa
Klaus-Bergmann, Alexandra
Ong, Yu Ting
Alt, Silvanus
Vion, Anne-Clémence
Szymborska, Anna
Carvalho, Joana R
Hollfinger, Irene
Bartels-Klein, Eireen
Franco, Claudio A
Potente, Michael
Gerhardt, Holger
YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
title YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
title_full YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
title_fullStr YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
title_full_unstemmed YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
title_short YAP and TAZ regulate adherens junction dynamics and endothelial cell distribution during vascular development
title_sort yap and taz regulate adherens junction dynamics and endothelial cell distribution during vascular development
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5814147/
https://www.ncbi.nlm.nih.gov/pubmed/29400648
http://dx.doi.org/10.7554/eLife.31037
work_keys_str_mv AT netofilipa yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT klausbergmannalexandra yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT ongyuting yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT altsilvanus yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT vionanneclemence yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT szymborskaanna yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT carvalhojoanar yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT hollfingerirene yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT bartelskleineireen yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT francoclaudioa yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT potentemichael yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment
AT gerhardtholger yapandtazregulateadherensjunctiondynamicsandendothelialcelldistributionduringvasculardevelopment