Vascular Smooth Muscle–Specific Progerin Expression Accelerates Atherosclerosis and Death in a Mouse Model of Hutchinson-Gilford Progeria Syndrome

Author:

Hamczyk Magda R.12,Villa-Bellosta Ricardo1,Gonzalo Pilar1,Andrés-Manzano María J.12,Nogales Paula1,Bentzon Jacob F.13,López-Otín Carlos45,Andrés Vicente12

Affiliation:

1. Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC), Madrid, Spain (M.R.H., R.V.-B., P.G., M.J.A.-M., P.N., J.F.B., V.A.).

2. Centro de Investigación Biomédica en Red de Enfermedades Cardiovasculares (CIBERCV), Spain (M.R.H., M.J.A.-M., V.A.).

3. Department of Clinical Medicine, Aarhus University, Denmark (J.F.B.).

4. Departamento de Bioquímica y Biología Molecular, Instituto Universitario de Oncología (IUOPA), Universidad de Oviedo, Spain (C.L.-O.).

5. Centro de Investigación Biomédica en Red de Cáncer (CIBERONC), Spain (C.L.-O.). The present affiliation for Dr Villa-Bellosta is Fundación Instituto de Investigación Sanitaria Fundación Jiménez Díaz (FIIS-FJD), Madrid, Spain.

Abstract

Background: Progerin, an aberrant protein that accumulates with age, causes the rare genetic disease Hutchinson-Gilford progeria syndrome (HGPS). Patients who have HGPS exhibit ubiquitous progerin expression, accelerated aging and atherosclerosis, and die in their early teens, mainly of myocardial infarction or stroke. The mechanisms underlying progerin-induced atherosclerosis remain unexplored, in part, because of the lack of appropriate animal models. Methods: We generated an atherosclerosis-prone model of HGPS by crossing apolipoprotein E–deficient ( Apoe –/– ) mice with Lmna G609G/G609G mice ubiquitously expressing progerin. To induce progerin expression specifically in macrophages or vascular smooth muscle cells (VSMCs), we crossed Apoe –/– Lmna LCS/LCS mice with LysMCre and SM22αCre mice, respectively. Progerin expression was evaluated by polymerase chain reaction and immunofluorescence. Cardiovascular alterations were determined by immunofluorescence and histology in male mice fed normal chow or a high-fat diet. In vivo low-density lipoprotein retention was assessed by intravenous injection of fluorescently labeled human low-density lipoprotein. Cardiac electric defects were evaluated by electrocardiography. Results: Apoe –/– Lmna G609G/G609G mice with ubiquitous progerin expression exhibited a premature aging phenotype that included failure to thrive and shortened survival. In addition, high-fat diet–fed Apoe –/– Lmna G609G/G609G mice developed a severe vascular pathology, including medial VSMC loss and lipid retention, adventitial fibrosis, and accelerated atherosclerosis, thus resembling most aspects of cardiovascular disease observed in patients with HGPS. The same vascular alterations were also observed in Apoe –/– Lmna LCS/LCS SM22αCre mice expressing progerin specifically in VSMCs, but not in Apoe –/– Lmna LCS/LCS LysMCre mice with macrophage-specific progerin expression. Moreover, Apoe –/– Lmna LCS/LCS SM22αCre mice had a shortened lifespan despite the lack of any overt aging phenotype. Aortas of ubiquitously and VSMC-specific progerin-expressing mice exhibited increased retention of fluorescently labeled human low-density lipoprotein, and atheromata in both models showed vulnerable plaque features. Immunohistopathological examination indicated that Apoe –/– Lmna LCS/LCS SM22αCre mice, unlike Apoe –/– Lmna G609G/G609G mice, die of atherosclerosis-related causes. Conclusions: We have generated the first mouse model of progerin-induced atherosclerosis acceleration, and demonstrate that restricting progerin expression to VSMCs is sufficient to accelerate atherosclerosis, trigger plaque vulnerability, and reduce lifespan. Our results identify progerin-induced VSMC death as a major factor triggering atherosclerosis and premature death in HGPS.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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