朱布
血管平滑肌
新生内膜
卡尔波宁
肌球蛋白
细胞生物学
肌钙蛋白
肌球蛋白轻链激酶
生物
小RNA
生长因子
胚胎血管重塑
血小板衍生生长因子
转录因子
细胞生长
医学
内分泌学
内科学
血清反应因子
再狭窄
血小板源性生长因子受体
肌动蛋白
生物化学
基因
受体
支架
平滑肌
作者
Pan Li,Ning Zhu,Bing Yi,Nadan Wang,Ming Chen,Xiaona You,Xin Zhao,Charalambos Solomides,Yue Qin,Jianxin Sun
出处
期刊:Circulation Research
[Ovid Technologies (Wolters Kluwer)]
日期:2013-10-25
卷期号:113 (10): 1117-1127
被引量:165
标识
DOI:10.1161/circresaha.113.301306
摘要
Abnormal phenotypic switch of vascular smooth muscle cell (VSMC) is a hallmark of vascular disorders such as atherosclerosis and restenosis after angioplasty. MicroRNAs (miRNAs) have emerged as important regulators for VSMC function, and we recently identified miR-663 as critical for controlling human aortic smooth muscle cell proliferation.To investigate whether miR-663 plays a role in human VSMC phenotypic switch and the development of neointima formation.By using quantitative reverse-transcription polymerase chain reaction, we found that miR-663 was significantly downregulated in human aortic VSMCs on platelet-derived growth factor treatment, whereas expression was markedly increased during VSMC differentiation. Furthermore, we demonstrated that overexpression of miR-663 increased expression of VSMC differentiation marker genes, such as smooth muscle 22α, smooth muscle α-actin, calponin, and smooth muscle myosin heavy chain, and potently inhibited platelet-derived growth factor-induced VSMC proliferation and migration. We identified the transcription factor JunB and myosin light chain 9 as downstream targets of miR-663 in human VSMCs, because overexpression of miR-663 markedly inhibited expression of JunB and its downstream molecules, such as myosin light chain 9 and matrix metalloproteinase 9. Finally, we showed that adeno-miR-663 markedly suppressed the neointimal lesion formation by ≈50% in mice after vascular injury induced by carotid artery ligation, specifically via decreased JunB expression.These results indicate that miR-663 is a novel modulator of human VSMC phenotypic switch by targeting JunB/myosin light chain 9 expression. These findings suggest that targeting miR-663 or its specific downstream targets in human VSMCs may represent an attractive approach for the treatment of proliferative vascular diseases.
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