Proteomic and Global DNA Methylation Modulation in Lipid Metabolism Disorders with a Marine-Derived Bioproduct

Author:

Martínez-Iglesias Olaia1,Naidoo Vinogran1,Corzo Lola1,Carrera Iván1,Seoane Silvia1,Rodríguez Susana1,Alcaraz Margarita1,Muñiz Adriana1,Cacabelos Natalia1,Cacabelos Ramón1ORCID

Affiliation:

1. EuroEspes Biomedical Research Center, International Center of Neuroscience and Genomic Medicine, 15165 Bergondo, Corunna, Spain

Abstract

Dyslipidemia is a significant risk factor for cardiovascular disease and stroke. Our recent findings showed that RCI-1502, a bioproduct derived from the muscle of the European S. pilchardus, has lipid-lowering effects in the liver and heart in high-fat diet (HFD) fed mice. In the present follow-up study, we investigated the therapeutic potential of RCI-1502 on gene expression and DNA methylation in HFD-fed mice and in patients with dyslipidemia. Using LC-MS/MS, we identified 75 proteins in RCI-1502 that are primarily involved in binding and catalytic activity and which regulate pathways implicated in cardiovascular diseases. In HFD-fed mice, RCI-1502 treatment significantly reduced the expression of cardiovascular disease-related genes, including vascular cell adhesion molecule and angiotensin. RCI-1502 also decreased DNA methylation levels, which were elevated in HFD-fed mice, to levels similar to those in control animals. Furthermore, peripheral blood leukocyte DNA from dyslipidemic patients exhibited higher DNA methylation levels than healthy individuals, suggesting a potential association with cardiovascular risk. Serum analysis also revealed that RCI-1502 treatment regulated cholesterol and triglyceride levels in patients with dyslipidemia. Our findings appear to suggest that RCI-1502 is an epigenetic modulator for the treatment of cardiovascular diseases, specifically in individuals with dyslipidemia.

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference68 articles.

1. Pappan, N. (2022). Dyslipidemia, StatPearls.

2. Global epidemiology of dyslipidaemias;Porillo;Nat. Rev. Cardiol.,2021

3. Effect of DNA methylation in various diseases and the probable protective role of nutrition: A mini-review;Kandi;Cureus,2015

4. The essentials of DNA methylation;Bird;Cell,1992

5. Biochemistry and biology of mammal DNA methyltransferases;Hermann;Cell Mol. Life Sci.,2004

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