PHACTR1 modulates vascular compliance but not endothelial function: a translational study

Author:

Wood Alice12ORCID,Antonopoulos Alexios3,Chuaiphichai Surawee34,Kyriakou Theodosios34,Diaz Rebeca34,Al Hussaini Abtehale12,Marsh Anna-Marie12,Sian Manjit12,Meisuria Mitul12,McCann Gerry12ORCID,Rashbrook Victoria S34,Drydale Edward34ORCID,Draycott Sally34,Polkinghorne Murray David3ORCID,Akoumianakis Ioannis3ORCID,Antoniades Charalambos3,Watkins Hugh34ORCID,Channon Keith M34,Adlam David12,Douglas Gillian34ORCID

Affiliation:

1. Department of Cardiovascular Sciences, Glenfield Hospital , Leicester , UK

2. National Institute for Health Research (NIHR) Leicester Biomedical Research Centre, Glenfield Hospital , Leicester , UK

3. BHF Centre of Research Excellence, Division of Cardiovascular Medicine, Radcliffe Department of Medicine, John Radcliffe Hospital, University of Oxford , Oxford OX3 9DU , UK

4. Wellcome Trust Centre for Human Genetics, University of Oxford , Roosevelt Drive, Oxford , UK

Abstract

Abstract Aims The non-coding locus at 6p24 located in Intron 3 of PHACTR1 has consistently been implicated as a risk allele in myocardial infarction and multiple other vascular diseases. Recent murine studies have identified a role for Phactr1 in the development of atherosclerosis. However, the role of PHACTR1 in vascular tone and in vivo vascular remodelling has yet to be established. The aim of this study was to investigate the role of PHACTR1 in vascular function. Methods and results Prospectively recruited coronary artery disease (CAD) patients undergoing bypass surgery and retrospectively recruited spontaneous coronary artery dissection (SCAD) patients and matched healthy volunteers were genotyped at the PHACTR1 rs9349379 locus. We observed a significant association between the PHACTR1 loci and changes in distensibility in both the ascending aorta (AA = 0.0053 ± 0.0004, AG = 0.0041 ± 0.003, GG = 0.0034 ± 0.0009, P < 0.05, n = 58, 54, and 7, respectively) and carotid artery (AA = 12.83 ± 0.51, AG = 11.14 ± 0.38, GG = 11.69 ± 0.66, P < 0.05, n = 70, 65, and 18, respectively). This association was not observed in the descending aorta or in SCAD patients. In contrast, the PHACTR1 locus was not associated with changes in endothelial cell function with no association between the rs9349379 locus and in vivo or ex vivo vascular function observed in CAD patients. This finding was confirmed in our murine model where the loss of Phactr1 on the pro-atherosclerosis ApoE−/− background did not alter ex vivo vascular function. Conclusion In conclusion, we have shown a role for PHACTR1 in arterial compliance across multiple vascular beds. Our study suggests that PHACTR1 has a key structural role within the vasculature.

Funder

British Heart Foundation

Wellcome Trust

BHF Centre of Research Excellence, Oxford

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

Reference36 articles.

1. A comprehensive 1,000 genomes-based genome-wide association meta-analysis of coronary artery disease;Nikpay;Nat Genet,2015

2. Fifteen new risk loci for coronary artery disease highlight arterial-wall-specific mechanisms;Howson;Nat Genet,2017

3. Large-scale association analysis identifies new risk loci for coronary artery disease;Deloukas;Nat Genet,2013

4. Myocardial infarction-associated SNP at 6p24 interferes with MEF2 binding and associates with PHACTR1 expression levels in human coronary arteries;Beaudoin;Arterioscler Thromb Vasc Biol,2015

5. Genetic dysregulation of endothelin-1 is implicated in coronary microvascular dysfunction;Ford;Eur Heart J,2020

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