Genetic deletion of MMP12 ameliorates cardiometabolic disease by improving insulin sensitivity, systemic inflammation, and atherosclerotic features in mice

Author:

Amor Melina,Bianco Valentina,Buerger Martin,Lechleitner Margarete,Vujić Nemanja,Dobrijević Anja,Akhmetshina Alena,Pirchheim Anita,Schwarz Birgit,Pessentheiner Ariane R.,Baumgartner Franziska,Rampitsch Katharina,Schauer Silvia,Klobučar Iva,Degoricija Vesna,Pregartner Gudrun,Kummer Daniel,Svecla Monika,Sommer Gerhard,Kolb Dagmar,Holzapfel Gerhard A.,Hoefler Gerald,Frank Saša,Norata Giuseppe Danilo,Kratky Dagmar

Abstract

Abstract Background Matrix metalloproteinase 12 (MMP12) is a macrophage-secreted protein that is massively upregulated as a pro-inflammatory factor in metabolic and vascular tissues of mice and humans suffering from cardiometabolic diseases (CMDs). However, the molecular mechanisms explaining the contributions of MMP12 to CMDs are still unclear. Methods We investigated the impact of MMP12 deficiency on CMDs in a mouse model that mimics human disease by simultaneously developing adipose tissue inflammation, insulin resistance, and atherosclerosis. To this end, we generated and characterized low-density lipoprotein receptor (Ldlr)/Mmp12-double knockout (DKO) mice fed a high-fat sucrose- and cholesterol-enriched diet for 16–20 weeks. Results DKO mice showed lower cholesterol and plasma glucose concentrations and improved insulin sensitivity compared with LdlrKO mice. Untargeted proteomic analyses of epididymal white adipose tissue revealed that inflammation- and fibrosis-related pathways were downregulated in DKO mice. In addition, genetic deletion of MMP12 led to alterations in immune cell composition and a reduction in plasma monocyte chemoattractant protein-1 in peripheral blood which indicated decreased low-grade systemic inflammation. Aortic en face analyses and staining of aortic valve sections demonstrated reduced atherosclerotic plaque size and collagen content, which was paralleled by an improved relaxation pattern and endothelial function of the aortic rings and more elastic aortic sections in DKO compared to LdlrKO mice. Shotgun proteomics revealed upregulation of anti-inflammatory and atheroprotective markers in the aortas of DKO mice, further supporting our data. In humans, MMP12 serum concentrations were only weakly associated with clinical and laboratory indicators of CMDs. Conclusion We conclude that the genetic deletion of MMP12 ameliorates obesity-induced low-grade inflammation, white adipose tissue dysfunction, biomechanical properties of the aorta, and the development of atherosclerosis. Therefore, therapeutic strategies targeting MMP12 may represent a promising approach to combat CMDs.

Funder

Austrian Science Fund

Ministero della Salute

Ministero dell’Università e della Ricerca

Medizinische Universität Graz

Amt der Steiermärkischen Landesregierung

City of Graz

Publisher

Springer Science and Business Media LLC

Subject

Cardiology and Cardiovascular Medicine,Endocrinology, Diabetes and Metabolism

Reference99 articles.

1. Kelli HM, Kassas I, Lattouf OM. Cardio metabolic syndrome: a global epidemic. J Diabetes Metab. 2015;6(3):2–14.

2. Chew NWS, Ng CH, Tan DJH, Kong G, Lin C, Chin YH, et al. Cell Metab. 2023;35(3):414–28e3. The global burden of metabolic disease: Data from 2000 to 2019.

3. Valenzuela PL, Carrera-Bastos P, Castillo-García A, Lieberman DE, Santos-Lozano A, Lucia A. Obesity and the risk of cardiometabolic Diseases. Nat Rev Cardiol. 2023.

4. Fredman G, Ozcan L, Tabas I. Common therapeutic targets in cardiometabolic Disease. Sci Transl Med. 2014;6(239):239ps5.

5. Esser N, Paquot N, Scheen AJ. Inflammatory markers and cardiometabolic Diseases. Acta Clin Belg. 2015;70(3):193–9.

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