Endothelial deletion of Wt1 disrupts coronary angiogenesis and myocardium development

Author:

Ramiro-Pareta Marina12ORCID,Müller-Sánchez Claudia1ORCID,Portella-Fortuny Rosa12ORCID,Soler-Botija Carolina34ORCID,Torres-Cano Alejo12ORCID,Esteve-Codina Anna5ORCID,Bayés-Genís Antoni3467ORCID,Reina Manuel1ORCID,Soriano Francesc X.18ORCID,Montanez Eloi9ORCID,Martínez-Estrada Ofelia M.12ORCID

Affiliation:

1. University of Barcelona 1 Celltec-UB, Department of Cell Biology, Physiology, and Immunology, Faculty of Biology , , Barcelona 08028, Spain

2. Institute of Biomedicine (IBUB), University of Barcelona 2 , Barcelona 08028 , Spain

3. ICREC (Heart Failure and Cardiac Regeneration) Research Program, Health Science Research Institute Germans Trias i Pujol (IGTP), Can Ruti Campus 3 , Badalona 08916, Spain

4. CIBERCV, Instituto de Salud Carlos III 4 , Madrid 28029, Spain

5. CNAG-CRG, Centre for Genomic Regulation, Barcelona Institute of Science and Technology and Universitat Pompeu Fabra 5 , Barcelona 08028, Spain

6. Germans Trias i Pujol University Hospital 6 Cardiology Service , , Badalona 08916 , Spain

7. UAB 7 Department of Medicine , , Barcelona 08193, Spain

8. Institut de Neurociències, Universitat de Barcelona 8 , Barcelona 08028, Spain

9. University of Barcelona 9 Department of Physiological Sciences, Faculty of Medicine and Health Sciences , , L'Hospitalet de Llobregat 08907 , Spain

Abstract

ABSTRACT Wt1 encodes a zinc finger protein that is crucial for epicardium development. Although WT1 is also expressed in coronary endothelial cells (ECs), the abnormal heart development observed in Wt1 knockout mice is mainly attributed to its functions in the epicardium. Here, we have generated an inducible endothelial-specific Wt1 knockout mouse model (Wt1KOΔEC). Deletion of Wt1 in ECs during coronary plexus formation impaired coronary blood vessels and myocardium development. RNA-Seq analysis of coronary ECs from Wt1KOΔEC mice demonstrated that deletion of Wt1 exerted a major impact on the molecular signature of coronary ECs and modified the expression of several genes that are dynamically modulated over the course of coronary EC development. Many of these differentially expressed genes are involved in cell proliferation, migration and differentiation of coronary ECs; consequently, the aforementioned processes were affected in Wt1KOΔEC mice. The requirement of WT1 in coronary ECs goes beyond the initial formation of the coronary plexus, as its later deletion results in defects in coronary artery formation. Through the characterization of these Wt1KOΔEC mouse models, we show that the deletion of Wt1 in ECs disrupts physiological blood vessel formation.

Funder

Ministerio de Ciencia e Innovación

Agencia Estatal de Investigación

“la Caixa” Foundation

Sociedad Española de Cardiología

Centro de Investigación Biomédica en Red Enfermedades Cardiovasculares

Instituto de Salud Carlos III

Ministerio de Economía y Competitividad

Universitat de Barcelona

Publisher

The Company of Biologists

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