首页> 美国卫生研究院文献>Molecular Therapy. Nucleic Acids >HDAC1-mediated deacetylation of HIF1α prevents atherosclerosis progression by promoting miR-224-3p-mediated inhibition of FOSL2
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HDAC1-mediated deacetylation of HIF1α prevents atherosclerosis progression by promoting miR-224-3p-mediated inhibition of FOSL2

机译:HFAC1介导的HIF1α的脱乙酰化通过促进MIR-224-3P介导的FOSL2抑制来防止动脉粥样硬化进展

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摘要

We intended to characterize functional relevance of microRNA (miR)-224-3p in endothelial cell (EC) apoptosis and reactive oxygen species (ROS) accumulation in atherosclerosis, considering also the integral involvement of histone deacetylase 1 (HDAC1)-mediated hypoxia-inducible factor-1α (HIF1α) deacetylation. The binding affinity between miR-224-3p and Fos-like antigen 2 (FOSL2) was predicted and validated. Furthermore, we manipulated miR-224-3p, FOSL2, HDAC1, and HIF1α expression in oxidized low-density lipoprotein (ox-LDL)-induced ECs, aiming to clarify their effects on cell activities, inflammation, and ROS level. Additionally, we examined the impact of miR-224-3p on aortic atherosclerotic plaque and lesions in a high-fat-diet-induced atherosclerosis model in ApoE−/− mice. Clinical atherosclerotic samples and ox-LDL-induced human aortic ECs (HAECs) exhibited low HDAC1/miR-224-3p expression and high HIF1α/FOSL2 expression. miR-224-3p repressed EC cell apoptosis, inflammatory responses, and intracellular ROS levels through targeting FOSL2. HIF1α reduced miR-224-3p expression to accelerate EC apoptosis and ROS accumulation. Moreover, HDAC1 inhibited HIF1α expression by deacetylation, which in turn enhanced miR-224-3p expression to attenuate EC apoptosis and ROS accumulation. miR-224-3p overexpression reduced atherosclerotic lesions in vivo. In summary, HDAC1 overexpression may enhance the anti-atherosclerotic and endothelial-protective effects of miR-224-3p-mediated inhibition of FOSL2 by deacetylating HIF1α, underscoring a novel therapeutic insight against experimental atherosclerosis.
机译:我们打算在动脉粥样硬化中表征内皮细胞(EC)细胞(EC)凋亡和反应性氧(ROS)积累中的MicroRNA(MIR)-224-3P的功能相关性,考虑到组蛋白脱乙酰酶1(HDAC1)介导的缺氧诱导物的整体累及因子-1α(HIF1α)脱乙酰化。预测并验证了MiR-224-3P和FOS样抗原2(FOSL2)之间的结合亲和力。此外,我们在氧化的低密度脂蛋白(OX-LDL)诱导的EC中操纵miR-224-3p,fosl2,hdac1和Hif1α表达,旨在阐明它们对细胞活性,炎症和ros水平的影响。此外,我们检查了在Apoe - / - 小鼠中高脂肪饮食诱导的动脉粥样硬化模型中主动脉动脉粥样硬化斑块和病变的影响。临床动脉粥样硬化样品和OX-LDL诱导的人主动脉ECS(HAECs)表现出低HDAC1 / miR-224-3P表达和高HIF1α/ FOSL2表达。 MiR-224-3P通过靶向FOSL2压制EC细胞凋亡,炎症反应和细胞内ROS水平。 HIF1α减少了miR-224-3p表达,以加速EC细胞凋亡和ROS积累。此外,HDAC1通过脱乙酰化抑制HIF1α表达,这反过来增强了miR-224-3p表达,以衰减EC细胞凋亡和ROS积累。 miR-224-3p过表达在体内减少了动脉粥样硬化病变。总之,HDAC1过表达可以通过脱乙酰化HIF1α增强MIR-224-3P介导的FOSL2抑制FOSL2的抗动脉粥样硬化和内皮保护作用,抑制了对实验动脉粥样硬化的新的治疗洞察力。

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