Competition for endothelial cell polarity drives vascular morphogenesis

Author:

Barbacena PedroORCID,Dominguez-Cejudo MariaORCID,Fonseca Catarina G.,Gómez-González Manuel,Faure Laura M.ORCID,Zarkada Georgia,Pena Andreia A.,Pezzarossa AnnaORCID,Ramalho DanielaORCID,Giarratano YleniaORCID,Ouarné MarieORCID,Barata David,Fortunato IsabelaORCID,Misiková Lenka H.,Mauldin Ian,Carvalho YuliaORCID,Trepat XavierORCID,Roca-Cusachs PereORCID,Eichmann AnneORCID,Bernabeu Miguel O.ORCID,Franco Cláudio A.ORCID

Abstract

AbstractBlood vessel formation generates unique vascular patterns in each individual. The principles governing the apparent stochasticity of this process remain to be elucidated. Using mathematical methods, we find that the transition between two fundamental vascular morphogenetic programs – sprouting angiogenesis and vascular remodeling – is established by a shift on collective front-rear polarity of endothelial cells. We demonstrate that the competition between biochemical (VEGFA) and mechanical (blood flow-induced shear stress) cues controls this collective polarity shift. Shear stress increases tension at focal adhesions overriding VEGFA-driven collective polarization, which relies on tension at adherens junctions. We propose that vascular morphogenetic cues compete to regulate individual cell polarity and migration through tension shifts that translates into tissue-level emergent behaviors, ultimately leading to uniquely organized vascular patterns.

Publisher

Cold Spring Harbor Laboratory

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