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MiR-337-3p lowers serum LDL-C level through targeting PCSK9 in hyperlipidemic mice

基因敲除 PCSK9 低密度脂蛋白受体 体内 内分泌学 高脂血症 小RNA 瑞舒伐他汀 胆固醇 化学 癌症研究 脂蛋白 药理学 生物 生物化学 基因 糖尿病 生物技术
作者
Xiaoding Xu,Yunxia Dong,Ningning Ma,Weiwen Kong,Chuwei Yu,Likun Gong,Jing Chen,Jin Ren
出处
期刊:Metabolism-clinical and Experimental [Elsevier BV]
卷期号:119: 154768-154768 被引量:18
标识
DOI:10.1016/j.metabol.2021.154768
摘要

Background Reducing serum low-density lipoprotein cholesterol (LDL-C) in hyperlipemia is recognized as an effective strategy to minimize the risk of atherosclerotic cardiovascular disease (ASCVD). MiR-337-3p has already been discovered to play regulatory roles in tumor proliferation and metastasis, adipocyte browning and ischemic brain injury, etc. However, the association between miR-337-3p and LDL-C is unknown. Methods Gene Expression Omnibus (GEO) dataset and two hyperlipidemic murine models were used to analyze the potential relationship between miR-337-3p and LDL-C. AAV-mediated liver-directed miRNA overexpression in high fat diet (HFD)-fed mouse model was used to examine the effect of miR-337-3p on LDL-C and WB/RT-PCR/ELISA/luciferase assays were used to investigate the underlying mechanism. Results The expressions of miR-337-3p were obviously lower in multiple hyperlipidemic mouse models and had a negative correlation with serum LDL-C levels. After confirming the effect of miR-337-3p on the improvement of serum LDL-C in vivo, we discovered PCSK9 might be a possible target of miR-337-3p, which was further proved by in vitro experiments. MiR-337-3p could directly interact with both the PCSK9 3′UTR and promoter to inhibit PCSK9 translation and transcription. Furthermore, the result from DiI-LDL uptake assay under the knockdown of PCSK9 demonstrated that miR-337-3p promoting the absorption of LDL-C in HepG2 cells was dependent on PCSK9, and the result from LDLR−/− mouse model indicated that miR-337-3p regulating LDL-C was dependent on PCSK9/LDLR pathway. Conclusion We discovered a new function of miR-337-3p in regulating PCSK9 expression and LDL-C absorption, suggesting miR-337-3p might be a new therapeutic target for the development of antihyperlipidemic drug.
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