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Published on: February 20, 2019
Additive contribution of microRNA-34a/b/c to human arterial ageing and atherosclerosis
Aikaterini Gatsiou1, Georgios Georgiopoulos2, Nikolaos I Vlachogiannis3
1Institute of Cardiovascular Regeneration, Center of Molecular Medicine, JW Goethe University Frankfurt, Frankfurt am Main, Germany; Department of Cardiology, Center of Internal Medicine, JW Goethe University Frankfurt, Frankfurt am Main, Germany; German Center of Cardiovascular Research (DZHK), Rhein-Main Partner Site, Frankfurt am Main, Germany; Biosciences Institute, Vascular Biology and Medicine Theme, Faculty of Medical Sciences, Newcastle University, Newcastle Upon Tyne, UK.
Background And Aims:
Preclinical data suggest that the ageing-induced miR-34a regulates vascular senescence. Herein we sought to assess whether the miR-34 family members miR-34a, miR-34b and miR-34c are involved in human arterial disease.
Methods:
Expression levels of miR-34a/b/c were quantified by TaqMan assay in peripheral blood mononuclear cells (PBMCs) derived from a consecutive cohort of 221 subjects who underwent cardiovascular risk assessment and thorough vascular examination for aortic stiffness and extent of arterial atherosclerosis.
Results:
High miR-34a was independently associated with the presence of CAD [OR (95%C.I.): 3.87 (1.56-9.56); p = 0.003] and high miR-34c with the number of diseased arterial beds [OR (95%C.I.): 1.88 (1.034-3.41); p = 0.038], while concurrent high expression of miR-34-a/c or all three miR-34a/b/c was associated with aortic stiffening (miR-34a/c: p = 0.022; miR-34a/b/c: p = 0.041) and with the extent of atherosclerosis [OR (95%C.I.) for number of coronary arteries [miR-34a/c: 3.29 (1.085-9.95); miR-34a/b/c: 6.06 (1.74-21.2)] and number of diseased arterial beds [miR-34a/c: 3.51 (1.45-8.52); miR-34a/b/c: 2.89 (1.05-7.92)] after controlling for possible confounders (p < 0.05 for all). Mechanistically, the increased levels of miR-34a or miR-34c were inversely associated with expression of SIRT1 or JAG1, NOTCH2, CTNNB1 and ATF1, respectively. The association of miR-34a/c or miR-34a/b/c with CAD was mainly mediated through SIRT1 and to a lesser extent through JAG1 as revealed by generalized structural equation modeling. Leukocyte-specific ablation of miR-34a/b/c ameliorates atherosclerotic plaque development and increases Sirt1 and Jag1 expression in an atherosclerosis mouse model confirming the human findings.
Conclusions:
The present study reveals the clinical significance of the additive role of miR-34a/b/c in vascular ageing and atherosclerotic vascular disease.
Insights
The miR-34 family (miR-34a/b/c) plays a significant role in human arterial disease and vascular aging. Higher levels of these microRNAs are linked to coronary artery disease and atherosclerosis, mediated by SIRT1 and JAG1.
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Genetics
Background:
- Preclinical studies indicate miR-34a regulates vascular senescence during aging.
- The involvement of the miR-34 family (miR-34a, miR-34b, miR-34c) in human arterial disease requires investigation.
Purpose of the Study:
- To assess the role of miR-34a, miR-34b, and miR-34c in human arterial disease.
- To investigate the association between miR-34 family expression and markers of vascular aging and atherosclerosis.
Main Methods:
- Quantified miR-34a/b/c expression in peripheral blood mononuclear cells (PBMCs) from 221 subjects using TaqMan assays.
- Assessed aortic stiffness and extent of arterial atherosclerosis in study participants.
- Utilized generalized structural equation modeling and a mouse model to explore mechanistic pathways.
Main Results:
- High miR-34a was independently associated with coronary artery disease (CAD).
- High miR-34c correlated with the number of diseased arterial beds.
- Combined high expression of miR-34a/b/c was linked to aortic stiffening and atherosclerosis extent.
- Mechanistically, miR-34a/c levels inversely correlated with SIRT1 and JAG1 expression, key mediators in CAD development.
- Leukocyte-specific ablation of miR-34a/b/c in mice ameliorated atherosclerosis.
Conclusions:
- The miR-34 family (miR-34a/b/c) has clinical significance in vascular aging and atherosclerotic vascular disease.
- The additive effect of miR-34a/b/c contributes to the pathogenesis of arterial disease.
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