Defective endothelial cell migration in the absence of Cdc42 leads to capillary-venous malformations

Author:

Laviña Bàrbara1,Castro Marco1,Niaudet Colin1,Cruys Bert23,Álvarez-Aznar Alberto1,Carmeliet Peter23,Bentley Katie14,Brakebusch Cord5ORCID,Betsholtz Christer16ORCID,Gaengel Konstantin1ORCID

Affiliation:

1. Department of Immunology, Genetics and Pathology, Rudbeck Laboratory, Uppsala University, 75185 Uppsala, Sweden

2. Laboratory of Angiogenesis and Vascular Metabolism, Department of Oncology, KU Leuven, Belgium

3. Laboratory of Angiogenesis and Vascular Metabolism, Vesalius Research Center, VIB, Leuven, Belgium

4. Computational Biology Laboratory, Center for Vascular Biology Research, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, USA

5. BRIC, University of Copenhagen, Ole Maaløes Vej 5, 2200 Copenhagen, Denmark

6. Integrated Cardio Metabolic Centre (ICMC), Karolinska Institute, Novum, SE-141 57 Huddinge, Stockholm, Sweden

Abstract

Formation and homeostasis of the vascular system requires several coordinated cellular functions, but their precise interplay during development and their relative importance for vascular pathologies remain poorly understood. Here, we investigate the endothelial functions regulated by Cdc42 and their in vivo relevance during angiogenic sprouting and vascular morphogenesis in the postnatal mouse retina. We find that Cdc42 is required for endothelial tip cell selection, directed cell migration and filopodia formation, but dispensable for cell proliferation or apoptosis. While the loss of Cdc42 seem generally compatible with apical-basal polarization and lumen formation in retinal blood vessels, it leads to defective endothelial axial polarization and to the formation of severe vascular malformations in capillaries and veins. Tracking of Cdc42 depleted endothelial cells in mosaic retinas suggests that these capillary-venous malformations arise as a consequence of defective cell migration, when endothelial cells that proliferate at normal rates are unable to re-distribute within the vascular network.

Funder

Swedish Cancer Foundation

Vetenskapsrådet

European Research Council

Knut och Alice Wallenbergs Stiftelse

Fondation Leducq

FP7 People: Marie-Curie Actions

Wenner-Gren Foundation

Longterm Structural Funding - Methusalem Funding by the Flemish Government

Agentschap voor Innovatie door Wetenschap en Technologie

Sundhed og Sygdom, Det Frie Forskningsråd

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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