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Publication : Functional investigation of the coronary artery disease gene SVEP1.

First Author  Winkler MJ Year  2020
Journal  Basic Res Cardiol Volume  115
Issue  6 Pages  67
PubMed ID  33185739 Mgi Jnum  J:298969
Mgi Id  MGI:6489659 Doi  10.1007/s00395-020-00828-6
Citation  Winkler MJ, et al. (2020) Functional investigation of the coronary artery disease gene SVEP1. Basic Res Cardiol 115(6):67
abstractText  A missense variant of the sushi, von Willebrand factor type A, EGF and pentraxin domain containing protein 1 (SVEP1) is genome-wide significantly associated with coronary artery disease. The mechanisms how SVEP1 impacts atherosclerosis are not known. We found endothelial cells (EC) and vascular smooth muscle cells to represent the major cellular source of SVEP1 in plaques. Plaques were larger in atherosclerosis-prone Svep1 haploinsufficient (ApoE(-/-)Svep1(+/-)) compared to Svep1 wild-type mice (ApoE(-/-)Svep1(+/+)) and ApoE(-/-)Svep1(+/-) mice displayed elevated plaque neutrophil, Ly6C(high) monocyte, and macrophage numbers. We assessed how leukocytes accumulated more inside plaques in ApoE(-/-)Svep1(+/-) mice and found enhanced leukocyte recruitment from blood into plaques. In vitro, we examined how SVEP1 deficiency promotes leukocyte recruitment and found elevated expression of the leukocyte attractant chemokine (C-X-C motif) ligand 1 (CXCL1) in EC after incubation with missense compared to wild-type SVEP1. Increasing wild-type SVEP1 levels silenced endothelial CXCL1 release. In line, plasma Cxcl1 levels were elevated in ApoE(-/-)Svep1(+/-) mice. Our studies reveal an atheroprotective role of SVEP1. Deficiency of wild-type Svep1 increased endothelial CXCL1 expression leading to enhanced recruitment of proinflammatory leukocytes from blood to plaque. Consequently, elevated vascular inflammation resulted in enhanced plaque progression in Svep1 deficiency.
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