Adenylate cyclase type 9 antagonizes cAMP accumulation and regulates endothelial signalling involved in atheroprotection

Author:

Rautureau Yohann1,Berlatie Marianne1,Rivas Daniel1,Uy Kurunradeth1ORCID,Blanchette Alexandre2,Miquel Géraldine1,Higgins Marie-Ève1,Mecteau Mélanie1,Nault Audrey1ORCID,Villeneuve Louis1,Lavoie Véronique1,Théberge-Julien Gabriel1ORCID,Brand Geneviève1,Lapointe Line1,Denis Maxime1ORCID,Rosa Camille3,Fortier Annik3ORCID,Blondeau Lucie3ORCID,Guertin Marie-Claude3,Dubé Marie-Pierre45ORCID,Thorin Éric16ORCID,Ledoux Jonathan2,Rhainds David1ORCID,Rhéaume Éric15ORCID,Tardif Jean-Claude15

Affiliation:

1. Montreal Heart Institute, Université de Montréal , Montreal , Canada

2. Department of Physiology and Pharmacology, Université de Montréal , Montreal , Canada

3. Montreal Health Innovations Coordinating Centre (MHICC) , Montreal , Canada

4. Université de Montréal Beaulieu-Saucier Pharmacogenomics Centre , Montreal , Canada

5. Department of Medicine, Université de Montréal , Montreal , Canada

6. Department of Surgery of the Faculty of Medicine, Université de Montréal , Montreal , Canada

Abstract

Abstract Aims The adenylate cyclase type 9 (ADCY9) gene appears to determine atherosclerotic outcomes in patients treated with dalcetrapib. In mice, we recently demonstrated that Adcy9 inactivation potentiates endothelial function and inhibits atherogenesis. The objective of this study was to characterize the contribution of ADCY9 to the regulation of endothelial signalling pathways involved in atherosclerosis. Methods and results We show that ADCY9 is expressed in the endothelium of mouse aorta and femoral arteries. We demonstrate that ADCY9 inactivation in cultured endothelial cells paradoxically increases cAMP accumulation in response to the adenylate cyclase activators forskolin and vasoactive intestinal peptide (VIP). Reciprocally, ADCY9 overexpression decreases cAMP production. Using mouse femoral artery arteriography, we show that Adcy9 inactivation potentiates VIP-induced endothelial-dependent vasodilation. Moreover, Adcy9 inactivation reduces mouse atheroma endothelial permeability in different vascular beds. ADCY9 overexpression reduces forskolin-induced phosphorylation of Ser157-vasodilator-stimulated phosphoprotein (VASP) and worsens thrombin-induced fall of RAP1 activity, both leading to increased endothelial permeability. ADCY9 inactivation in thrombin-stimulated human coronary artery endothelial cells results in cAMP accumulation, increases p-Ser157-VASP, and inhibits endothelial permeability. MLC2 phosphorylation and actin stress fibre increases in response to thrombin were reduced by ADCY9 inactivation, suggesting actin cytoskeleton regulation. Finally, using the Miles assay, we demonstrate that Adcy9 regulates thrombin-induced endothelial permeability in vivo in normal and atherosclerotic animals. Conclusion Adcy9 is expressed in endothelial cells and regulates local cAMP and endothelial functions including permeability relevant to atherogenesis.

Funder

DalCor Pharmaceuticals

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Reference42 articles.

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2. Genotype-dependent effects of dalcetrapib on cholesterol efflux and inflammation: concordance with clinical outcomes;Tardif;Circ Cardiovasc Genet,2016

3. ADCY9 (adenylate cyclase type 9) inactivation protects from atherosclerosis only in the absence of CETP (cholesteryl ester transfer protein);Rautureau;Circulation,2018

4. Study design of Dal-GenE, a pharmacogenetic trial targeting reduction of cardiovascular events with dalcetrapib;Tardif;Am Heart J,2020

5. Insights into the regulatory properties of human adenylyl cyclase type 9;Baldwin;Mol Pharmacol,2019

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