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In Vivo Nanovector Delivery of a Heart-specific MicroRNA-sponge
Published on: June 15, 2018
MicroRNA-19b promotes macrophage cholesterol accumulation and aortic atherosclerosis by targeting ATP-binding
Yun-Cheng Lv1, Yan-Yan Tang2, Juan Peng2
1Institute of Cardiovascular Research, Key Laboratory for Atherosclerology of Hunan Province, Life Science Research Center, University of South China, Hengyang 421001, Hunan, China; Laboratory of Clinical Anatomy, University of South China, Hengyang 421001, China.
Rationale:
Macrophage accumulation of cholesterol leads to foam cell formation which is a major pathological event of atherosclerosis. Recent studies have shown that microRNA (miR)-19b might play an important role in cholesterol metabolism and atherosclerotic diseases. Here, we have identified miR-19b binding to the 3'UTR of ATP-binding cassette transporter A1 (ABCA1) transporters, and further determined the potential roles of this novel interaction in atherogenesis.
Objective:
To investigate the molecular mechanisms involved in a miR-19b promotion of macrophage cholesterol accumulation and the development of aortic atherosclerosis.
Methods And Results:
We performed bioinformatics analysis using online websites, and found that miR-19b was highly conserved during evolution and directly bound to ABCA1 mRNA with very low binding free energy. Luciferase reporter assay confirmed that miR-19b bound to 3110-3116 sites within ABCA1 3'UTR. MiR-19b directly regulated the expression levels of endogenous ABCA1 in foam cells derived from human THP-1 macrophages and mouse peritoneal macrophages (MPMs) as determined by qRT-PCR and western blot. Cholesterol transport assays revealed that miR-19b dramatically suppressed apolipoprotein AI-mediated ABCA1-dependent cholesterol efflux, resulting in the increased levels of total cholesterol (TC), free cholesterol (FC) and cholesterol ester (CE) as revealed by HPLC. The excretion of (3)H-cholesterol originating from cholesterol-laden MPMs into feces was decreased in mice overexpressing miR-19b. Finally, we evaluated the proatherosclerotic role of miR-19b in apolipoprotein E deficient (apoE(-/-)) mice. Treatment with miR-19b precursor reduced plasma high-density lipoprotein (HDL) levels, but increased plasma low-density lipoprotein (LDL) levels. Consistently, miR-19b precursor treatment increased aortic plaque size and lipid content, but reduced collagen content and ABCA1 expression. In contrast, treatment with the inhibitory miR-19b antisense oligonucleotides (ASO) prevented or reversed these effects.
Conclusion:
MiR-19b promotes macrophage cholesterol accumulation, foam cell formation and aortic atherosclerotic development by targeting ABCA1.
Insights
MicroRNA-19b (miR-19b) promotes atherosclerosis by increasing macrophage cholesterol accumulation. It targets ATP-binding cassette transporter A1 (ABCA1), leading to foam cell formation and aortic plaque development.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiovascular Research
Background:
- Macrophage cholesterol accumulation drives foam cell formation, a key event in atherosclerosis.
- MicroRNA-19b (miR-19b) is implicated in cholesterol metabolism and atherosclerotic diseases.
Purpose of the Study:
- To elucidate the molecular mechanisms by which miR-19b promotes macrophage cholesterol accumulation.
- To investigate the role of miR-19b in the development of aortic atherosclerosis.
Main Methods:
- Bioinformatics analysis and luciferase reporter assays to confirm miR-19b binding to ABCA1 3'UTR.
- qRT-PCR, western blot, and cholesterol transport assays in macrophages.
- In vivo studies using apolipoprotein E-deficient mice treated with miR-19b precursor or antisense oligonucleotides.
Main Results:
- miR-19b directly binds and downregulates ABCA1 expression in macrophages.
- miR-19b suppresses ABCA1-dependent cholesterol efflux, increasing intracellular cholesterol levels.
- In vivo, miR-19b promotes atherosclerotic lesion development, reduces HDL, and increases LDL.
Conclusions:
- miR-19b promotes macrophage cholesterol accumulation and foam cell formation.
- miR-19b targets ABCA1, contributing to the development of aortic atherosclerosis.
- Inhibition of miR-19b may offer a therapeutic strategy for atherosclerosis.
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