FURIN Expression in Vascular Endothelial Cells Is Modulated by a Coronary Artery Disease–Associated Genetic Variant and Influences Monocyte Transendothelial Migration

Author:

Yang Xu12,Yang Wei1,McVey David G.3,Zhao Guojun14,Hu Jinfu1,Poston Robin N.5,Ren Meixia6,Willeit Karin7,Coassin Stefan8,Willeit Johann9,Webb Thomas R.3,Samani Nilesh J.3,Mayr Manuel10,Kiechl Stefan9,Ye Shu13

Affiliation:

1. Shantou University Medical College Shantou China

2. Second Affiliated Hospital of Shantou University Medical College Shantou China

3. Department of Cardiovascular Sciences and National Institute for Health Research Leicester Biomedical Research Centre University of Leicester United Kingdom

4. The Sixth Affiliated Hospital of Guangzhou Medical University Qingyuan City People's Hospital Qingyuan China

5. William Harvey Research Institute Queen Mary University of London London United Kingdom

6. Department of Geriatric Medicine Fujian Provincial Hospital Fuzhou China

7. Department of Neurology Bern University Hospital University of Bern Switzerland

8. Institute of Genetic Epidemiology Medical University of Innsbruck Innsbruck Austria

9. Department of Neurology Medical University of Innsbruck Innsbruck Austria

10. Cardiovascular Division King's College London London United Kingdom

Abstract

Background Genome‐wide association studies have shown an association between the single‐nucleotide polymorphism rs17514846 on chromosome 15q26.1 and coronary artery disease susceptibility. The underlying biological mechanism is, however, not fully understood. rs17514846 is located in the FES Upstream Region ( FURIN ) gene, which is expressed in vascular endothelial cells (ECs). We investigated whether rs17514846 has an influence on FURIN expression in ECs and whether FURIN affects EC behavior. Methods and Results Quantitative reverse transcription–polymerase chain reaction analysis showed that cultured vascular ECs from individuals carrying the coronary artery disease risk allele of rs17514846 had higher FURIN expression than cells from noncarriers. In support, luciferase reporter analyses in ECs indicated that the risk allele had higher transcriptional activity than the nonrisk allele. Electrophoretic mobility shift assays using EC nuclear protein extracts detected a DNA ‐protein complex with allele‐specific differential binding of a nuclear protein. Knockdown of FURIN in ECs reduced endothelin‐1 secretion, nuclear factor‐κB activity, vascular cell adhesion molecule‐1, and MCP1 (monocyte chemotactic protein‐1) expression and monocyte‐endothelial adhesion and transmigration. A population‐based study showed an association of the rs17514846 risk allele with higher circulating MCP1 levels and greater carotid intima‐media thickness. Conclusions The coronary artery disease risk variant at the 15q26.1 locus modulates FURIN expression in vascular ECs. FURIN levels in ECs affect monocyte‐endothelial adhesion and migration.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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