miR-26a inhibits atherosclerosis progression by targeting TRPC3

Abstract Background Atherosclerosis, a chronic multi-factorial vascular disease, has become a predominant cause of a variety of cardiovascular disorders. miR-26a was previously reported to be involved in atherosclerosis progression. However, the underlying mechanism of miR-26a in atherosclerosis rem...

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Main Authors: Min Feng, Daqian Xu, Lirui Wang
Format: Article
Language:English
Published: BMC 2018-01-01
Series:Cell & Bioscience
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13578-018-0203-9
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spelling doaj-149a6bd9f69645e88e6f42651a8984bb2020-11-24T22:03:15ZengBMCCell & Bioscience2045-37012018-01-018111210.1186/s13578-018-0203-9miR-26a inhibits atherosclerosis progression by targeting TRPC3Min Feng0Daqian Xu1Lirui Wang2Department of Intensive Care Unit, The First Affiliated Hospital of Zhengzhou UniversityDepartment of Intensive Care Unit, The First Affiliated Hospital of Zhengzhou UniversityDepartment of Intensive Care Unit, The First Affiliated Hospital of Zhengzhou UniversityAbstract Background Atherosclerosis, a chronic multi-factorial vascular disease, has become a predominant cause of a variety of cardiovascular disorders. miR-26a was previously reported to be involved in atherosclerosis progression. However, the underlying mechanism of miR-26a in atherosclerosis remains to be further explained. Methods High-fat diet (HFD)-fed apolipoprotein E (apoE)−/− mice and oxidized low-density lipoprotein (ox-LDL)-stimulated human aortic endothelial cells (HAECs) were established as in vivo and in vitro models of atherosclerosis. RT-qPCR and western blot analysis were performed to measure the expression of miR-26a and transient receptor potential canonical 3 (TRPC3), respectively. Binding between miR-26a and TRPC3 was predicted with bioinformatics software and verified using a dual luciferase reporter assay. The effects of miR-26a on the lipid accumulation, atherosclerotic lesion, and inflammatory response in HFD-fed apoE−/− mice were investigated by a colorimetric enzymatic assay system, hematoxylin–eosin and oil-Red-O staining, and ELISA, respectively. Additionally, the effects of miR-26a or combined with TRPC3 on cell viability, apoptosis and the nuclear factor-kappa B (NF-κB) pathway in ox-LDL-stimulated HAECs were evaluated by MTT assay, TUNEL assay, and western blot, respectively. Results miR-26a was downregulated in HFD-fed apoE−/− mice and ox-LDL-stimulated HAECs. miR-26a overexpression inhibited the pathogenesis of atherosclerosis by attenuating hyperlipidemia, atherosclerotic lesion and suppressing inflammatory response in HFD-fed apoE−/− mice. Moreover, miR-26a overexpression suppressed inflammatory response and the NF-κB pathway, promoted cell viability and inhibited apoptosis in ox-LDL-stimulated HAECs. Additionally, TRPC3 was demonstrated to be a direct target of miR-26a. Enforced expression of TRPC3 reversed the effects of miR-26a on cell viability, apoptosis, and the NF-κB pathway in ox-LDL-treated HAECs. Conclusions miR-26a alleviated the development of atherosclerosis by regulating TRPC3, providing a potential target for atherosclerosis treatment.http://link.springer.com/article/10.1186/s13578-018-0203-9miR-26aTRPC3ApoE−/−Endothelial cellsox-LDLAtherosclerosis
collection DOAJ
language English
format Article
sources DOAJ
author Min Feng
Daqian Xu
Lirui Wang
spellingShingle Min Feng
Daqian Xu
Lirui Wang
miR-26a inhibits atherosclerosis progression by targeting TRPC3
Cell & Bioscience
miR-26a
TRPC3
ApoE−/−
Endothelial cells
ox-LDL
Atherosclerosis
author_facet Min Feng
Daqian Xu
Lirui Wang
author_sort Min Feng
title miR-26a inhibits atherosclerosis progression by targeting TRPC3
title_short miR-26a inhibits atherosclerosis progression by targeting TRPC3
title_full miR-26a inhibits atherosclerosis progression by targeting TRPC3
title_fullStr miR-26a inhibits atherosclerosis progression by targeting TRPC3
title_full_unstemmed miR-26a inhibits atherosclerosis progression by targeting TRPC3
title_sort mir-26a inhibits atherosclerosis progression by targeting trpc3
publisher BMC
series Cell & Bioscience
issn 2045-3701
publishDate 2018-01-01
description Abstract Background Atherosclerosis, a chronic multi-factorial vascular disease, has become a predominant cause of a variety of cardiovascular disorders. miR-26a was previously reported to be involved in atherosclerosis progression. However, the underlying mechanism of miR-26a in atherosclerosis remains to be further explained. Methods High-fat diet (HFD)-fed apolipoprotein E (apoE)−/− mice and oxidized low-density lipoprotein (ox-LDL)-stimulated human aortic endothelial cells (HAECs) were established as in vivo and in vitro models of atherosclerosis. RT-qPCR and western blot analysis were performed to measure the expression of miR-26a and transient receptor potential canonical 3 (TRPC3), respectively. Binding between miR-26a and TRPC3 was predicted with bioinformatics software and verified using a dual luciferase reporter assay. The effects of miR-26a on the lipid accumulation, atherosclerotic lesion, and inflammatory response in HFD-fed apoE−/− mice were investigated by a colorimetric enzymatic assay system, hematoxylin–eosin and oil-Red-O staining, and ELISA, respectively. Additionally, the effects of miR-26a or combined with TRPC3 on cell viability, apoptosis and the nuclear factor-kappa B (NF-κB) pathway in ox-LDL-stimulated HAECs were evaluated by MTT assay, TUNEL assay, and western blot, respectively. Results miR-26a was downregulated in HFD-fed apoE−/− mice and ox-LDL-stimulated HAECs. miR-26a overexpression inhibited the pathogenesis of atherosclerosis by attenuating hyperlipidemia, atherosclerotic lesion and suppressing inflammatory response in HFD-fed apoE−/− mice. Moreover, miR-26a overexpression suppressed inflammatory response and the NF-κB pathway, promoted cell viability and inhibited apoptosis in ox-LDL-stimulated HAECs. Additionally, TRPC3 was demonstrated to be a direct target of miR-26a. Enforced expression of TRPC3 reversed the effects of miR-26a on cell viability, apoptosis, and the NF-κB pathway in ox-LDL-treated HAECs. Conclusions miR-26a alleviated the development of atherosclerosis by regulating TRPC3, providing a potential target for atherosclerosis treatment.
topic miR-26a
TRPC3
ApoE−/−
Endothelial cells
ox-LDL
Atherosclerosis
url http://link.springer.com/article/10.1186/s13578-018-0203-9
work_keys_str_mv AT minfeng mir26ainhibitsatherosclerosisprogressionbytargetingtrpc3
AT daqianxu mir26ainhibitsatherosclerosisprogressionbytargetingtrpc3
AT liruiwang mir26ainhibitsatherosclerosisprogressionbytargetingtrpc3
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