p73 is required for vessel integrity controlling endothelial junctional dynamics through Angiomotin

[EN] Preservation of blood vessel integrity, which is critical for normal physiology and organ function, is controlled at multiple levels, including endothelial junctions. However, the mechanism that controls the adequate assembly of endothelial cell junctions is not fully defined. Here, we uncover...

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Detalhes bibliográficos
Autores: Maeso Alonso, Laura, Alonso Olivares, Hugo, Martínez García, Nicole, López Ferreras, Lorena, Villoch Fernández, Javier, Puente Santamaría, Laura, Colas Algora, Natalia, Fernández Corona, Alfonso, Lorenzo Marcos, María Elena, Jiménez, Benilde, Holmgren, Lars, Wilhelm, Margareta, Millan, Jaime, Peso, Luis del, Claesson-Welsh, Lena, Marqués Martínez, Margarita, Marín Vieira, María Carmen
Formato: artículo
Estado:Versión publicada
Fecha de publicación:2022
País:España
Recursos:Universidad de León
Repositorio:BULERIA. Repositorio Institucional de la Universidad de León
OAI Identifier:oai:buleria.unileon.es:10612/15156
Acesso em linha:https://link.springer.com/article/10.1007/s00018-022-04560-3
http://hdl.handle.net/10612/15156
Access Level:acceso abierto
Palavra-chave:Biología
Biotecnología
Genética
p53 family
Cell junctions
Endothelial barrier integrity
Vascular morphogenesis
Actin cytoskeleton
VE-cadherin and angiogenesis
2415 Biología Molecular
24 Ciencias de la Vida
240108 Genética Animal
2407 Biología Celular
240701 Cultivo Celular
2409 Genética
Descrição
Resumo:[EN] Preservation of blood vessel integrity, which is critical for normal physiology and organ function, is controlled at multiple levels, including endothelial junctions. However, the mechanism that controls the adequate assembly of endothelial cell junctions is not fully defined. Here, we uncover TAp73 transcription factor as a vascular architect that orchestrates transcriptional programs involved in cell junction establishment and developmental blood vessel morphogenesis and identify Angiomotin (AMOT) as a TAp73 direct transcriptional target. Knockdown of p73 in endothelial cells not only results in decreased Angiomotin expression and localization at intercellular junctions, but also affects its downstream function regarding Yes-associated protein (YAP) cytoplasmic sequestration upon cell–cell contact. Analysis of adherens junctional morphology after p73-knockdown in human endothelial cells revealed striking alterations, particularly a sharp increase in serrated junctions and actin bundles appearing as stress fibers, both features associated with enhanced barrier permeability. In turn, stabilization of Angiomotin levels rescued those junctional defects, confirming that TAp73 controls endothelial junction dynamics, at least in part, through the regulation of Angiomotin. The observed defects in monolayer integrity were linked to hyperpermeability and reduced transendothelial electric resistance. Moreover, p73-knockout retinas showed a defective sprout morphology coupled with hemorrhages, highlighting the physiological relevance of p73 regulation in the maintenance of vessel integrity in vivo. We propose a new model in which TAp73 acts as a vascular architect integrating transcriptional programs that will impinge with Angiomotin/YAP signaling to maintain junctional dynamics and integrity, while balancing endothelial cell rearrangements in angiogenic vessels.