Identification of Mep1a as a susceptibility gene for atherosclerosis in mice

Author:

Grainger Andrew T.12,Pilar Nathanael2,Li Jun2,Chen Mei-Hua2,Abramson Ashley M.2ORCID,Becker-Pauly Christoph3,Shi Weibin12ORCID

Affiliation:

1. Departments of Biochemistry & Molecular Genetics, University of Virginia, Charlottesville, VA 22908, USA

2. Radiology & Medical Imaging, University of Virginia, Charlottesville, VA 22908, USA

3. Biochemical Institute, Kiel University, Kiel D-24118, Germany

Abstract

Abstract Atherosclerosis is the underlying cause of heart attack, ischemic stroke and peripheral arterial disease, and genetic factors involved remain mostly unidentified. We previously identified a significant locus on mouse chromosome 17 for atherosclerosis, Ath49, in an intercross between BALB/c and SM strains. Ath49 partially overlaps in the confidence interval with Ath22 mapped in an AKR × DBA/2 intercross. Bioinformatics analysis prioritized Mep1a, encoding meprin 1α metalloendopeptidase, as a likely candidate gene for Ath49. To prove causality, Mep1a−/−Apoe−/− mice were generated and compared with Mep1a+/+Apoe−/− mice for atherosclerosis development. Mep1a was found abundantly expressed in atherosclerotic lesions but not in healthy aorta and liver of mice. Mep1a−/− Apoe−/− mice exhibited significant reductions in both early and advanced lesion sizes. Loss of Mep1a led to decreased necrosis but increased macrophage and neutrophil contents in advanced lesions, reduced plasma levels of CXCL5 and an oxidative stress biomarker. In addition, Mep1a−/− mice had significantly reduced triglyceride levels on a chow diet. Thus, Mep1a is a susceptibility gene for atherosclerosis and aggravates atherosclerosis partially through action on oxidative stress and inflammation.

Funder

NIH

Commonwealth Health Research Board

Publisher

Oxford University Press (OUP)

Subject

Genetics

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