Fibrillin-1 regulates endothelial sprouting during angiogenesis

Author:

Alonso Florian12ORCID,Dong Yuechao12,Li Ling3ORCID,Jahjah Tiya12ORCID,Dupuy Jean-William1ORCID,Fremaux Isabelle12ORCID,Reinhardt Dieter P.34ORCID,Génot Elisabeth12ORCID

Affiliation:

1. Université de Bordeaux F-33000 Bordeaux, France

2. INSERM U1026, BioTis F-33000 Bordeaux, France

3. Faculty of Medicine and Health Sciences, McGill University, Montreal, QC H3A 0C7, Canada

4. Faculty of Dental Medicine and Oral Health Sciences, McGill University, Montreal, QC H3A 0C7, Canada

Abstract

Fibrillin-1 is an extracellular matrix protein that assembles into microfibrils which provide critical functions in large blood vessels and other tissues. Mutations in the fibrillin-1 gene are associated with cardiovascular, ocular, and skeletal abnormalities in Marfan syndrome. Here, we reveal that fibrillin-1 is critical for angiogenesis which is compromised by a typical Marfan mutation. In the mouse retina vascularization model, fibrillin-1 is present in the extracellular matrix at the angiogenic front where it colocalizes with microfibril-associated glycoprotein-1, MAGP1. In Fbn1 C1041G/+ mice, a model of Marfan syndrome, MAGP1 deposition is reduced, endothelial sprouting is decreased, and tip cell identity is impaired. Cell culture experiments confirmed that fibrillin-1 deficiency alters vascular endothelial growth factor-A/Notch and Smad signaling which regulate the acquisition of endothelial tip cell/stalk cell phenotypes, and we showed that modulation of MAGP1 expression impacts these pathways. Supplying the growing vasculature of Fbn1 C1041G/+ mice with a recombinant C-terminal fragment of fibrillin-1 corrects all defects. Mass spectrometry analyses showed that the fibrillin-1 fragment alters the expression of various proteins including ADAMTS1, a tip cell metalloprotease and matrix-modifying enzyme. Our data establish that fibrillin-1 is a dynamic signaling platform in the regulation of cell specification and matrix remodeling at the angiogenic front and that mutant fibrillin-1-induced defects can be rescued pharmacologically using a C-terminal fragment of the protein. These findings, identify fibrillin-1, MAGP1, and ADAMTS1 in the regulation of endothelial sprouting, and contribute to our understanding of how angiogenesis is regulated. This knowledge may have critical implications for people with Marfan syndrome.

Funder

Institut National de la Santé et de la Recherche Médicale

Marfans

Ligue Contre le Cancer

Canadian Institutes of Health Research

Marfan Foundation

Glaucoma Foundation

Fondation de France

Fondation Lefoulon-Delalande

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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