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CircLZIC 通过 Micro-330-5p/NOTCH2 轴调控 ox-LDL 诱导的 HUVEC 细胞增殖和凋亡在动脉粥样硬化中的作用。

CircLZIC regulates ox-LDL-induced HUVEC cell proliferation and apoptosis via Micro-330-5p/NOTCH2 axis in atherosclerosis.

机构信息

Department of Cardiology, The Affiliated Yantai Yuhuangding Hospital of Qingdao University, Yantai, Shandong, China.

出版信息

Clin Hemorheol Microcirc. 2024;87(1):115-127. doi: 10.3233/CH-232063.

Abstract

Atherosclerosis (AS) is a major chronic non-communicable disease and a primary cause of cardiovascular disease. Recent studies have shown that circRNAs are potential epigenetic factors that regulate vascular endothelial inflammatory responses and AS progression. Therefore, identification of the circRNAs that regulate ox-LDL levels is a critical step to understanding the pathology of AS. Our study is aim to investigate how circLZIC regulates atherosclerosis (AS) via the Micro-330-5p/NOTCH2 regulatory axis. The results showed that CircLZIC and NOTCH2 are highly expressed in human AS clinical samples, while Micro-330-5p is expressed locally. The CCK-8 experiment results showed that circLZIC promotes the proliferation of HUVECS cells. Flow cytometry analysis showed that circLZIC act as an inhibitor of HUVEC cell apoptosis. The expression level of Micro-330-5p can be up-regulated by transfection of small interfering RNA against circLZIC. Further, Starbase predicted that Micro-330-5p could target and regulate NOTCH2. Next, we confirmed that overexpression of Micro-330-5p could significantly reduce the expression of fluorescein using the double Luciferase reporter assay. RIP-qRT-PCR experiment showed that Micro-330-5p and NOTCH2 mRNAs are effectively enriched by ago2 protein. Further, we found that knocking down circLZIC increases the expression of Micro-330-5p and promotes cell apoptosis, while inhibiting the expression of NOTCH2 and cell activity. On the other hand, co-transfection of Micro-330-5p inhibitor decreases Micro-330-5p expression and inhibit cell apoptosis, while increasing NOTCH2 expression and cell activity. In conclusion, CircLZIC regulates HUVEC cell activity by the Micro-330-5p/NOTCH2 signaling pathway, suggesting that circLZIC plays a key role in atherosclerosis development.

摘要

动脉粥样硬化(AS)是一种主要的慢性非传染性疾病,也是心血管疾病的主要原因。最近的研究表明,circRNAs 是调节血管内皮炎症反应和 AS 进展的潜在表观遗传因素。因此,鉴定调节 ox-LDL 水平的 circRNAs 是理解 AS 病理的关键步骤。我们的研究旨在探讨 circLZIC 如何通过 Micro-330-5p/NOTCH2 调节轴调节动脉粥样硬化(AS)。结果表明,CircLZIC 和 NOTCH2 在人 AS 临床样本中高表达,而 Micro-330-5p 局部表达。CCK-8 实验结果表明 circLZIC 促进 HUVECS 细胞增殖。流式细胞术分析表明,circLZIC 作为 HUVEC 细胞凋亡的抑制剂发挥作用。circLZIC 的小干扰 RNA 转染可上调 Micro-330-5p 的表达水平。进一步,Starbase 预测 Micro-330-5p 可以靶向并调节 NOTCH2。接下来,我们通过双荧光素酶报告基因检测证实,Micro-330-5p 的过表达可以显著减少荧光素的表达。RIP-qRT-PCR 实验表明,ago2 蛋白可以有效地富集 Micro-330-5p 和 NOTCH2 mRNAs。进一步,我们发现敲低 circLZIC 会增加 Micro-330-5p 的表达并促进细胞凋亡,同时抑制 NOTCH2 的表达和细胞活性。另一方面,Micro-330-5p 抑制剂的共转染会降低 Micro-330-5p 的表达并抑制细胞凋亡,同时增加 NOTCH2 的表达和细胞活性。总之,CircLZIC 通过 Micro-330-5p/NOTCH2 信号通路调节 HUVEC 细胞活性,提示 CircLZIC 在动脉粥样硬化发展中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49ea/11191521/d8c1405eb253/ch-87-ch232063-g001.jpg

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