Neuropilin-1 interacts with VE-cadherin and TGFBR2 to stabilize adherens junctions and prevent activation of endothelium under flow

Author:

Bosseboeuf Emy1ORCID,Chikh Anissa2ORCID,Chaker Ahmed Bey1ORCID,Mitchell Tom P.3ORCID,Vignaraja Dhilakshani4,Rajendrakumar Ridhi1ORCID,Khambata Rayomand S.1,Nightingale Thomas D.3,Mason Justin C.5,Randi Anna M.5ORCID,Ahluwalia Amrita1ORCID,Raimondi Claudio1ORCID

Affiliation:

1. William Harvey Research Institute, Barts and London School of Medicine and Dentistry, Centre of Cardiovascular Medicine and Devices, Queen Mary University of London, Charterhouse Square, London EC1M 6BQ, UK.

2. Molecular and Clinical Sciences Research Institute, St. George's University of London, London SW17 0RE, UK.

3. William Harvey Research Institute, Barts and London School of Medicine and Dentistry, Centre for Microvascular Research, Queen Mary University of London, Charterhouse Square, London EC1M 6BQ, UK.

4. National Heart and Lung Institute, Imperial College London, London W12 0NN, UK.

5. Vascular Sciences, National Heart and Lung Institute, Faculty of Medicine, Imperial College London, Hammersmith Campus, Du Cane Road, London W12 0HS, UK.

Abstract

Linear and disturbed flow differentially regulate gene expression, with disturbed flow priming endothelial cells (ECs) for a proinflammatory, atheroprone expression profile and phenotype. Here, we investigated the role of the transmembrane protein neuropilin-1 (NRP1) in ECs exposed to flow using cultured ECs, mice with an endothelium-specific knockout of NRP1, and a mouse model of atherosclerosis. We demonstrated that NRP1 was a constituent of adherens junctions that interacted with VE-cadherin and promoted its association with p120 catenin, stabilizing adherens junctions and inducing cytoskeletal remodeling in alignment with the direction of flow. We also showed that NRP1 interacted with transforming growth factor–β (TGF-β) receptor II (TGFBR2) and reduced the plasma membrane localization of TGFBR2 and TGF-β signaling. NRP1 knockdown increased the abundance of proinflammatory cytokines and adhesion molecules, resulting in increased leukocyte rolling and atherosclerotic plaque size. These findings describe a role for NRP1 in promoting endothelial function and reveal a mechanism by which NRP1 reduction in ECs may contribute to vascular disease by modulating adherens junction signaling and promoting TGF-β signaling and inflammation.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Cell Biology,Molecular Biology,Biochemistry

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