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NF-κB 反应性 miR-155 通过下调可溶性鸟苷酸环化酶诱导血管平滑肌细胞功能障碍。

NF-κB-responsive miR-155 induces functional impairment of vascular smooth muscle cells by downregulating soluble guanylyl cyclase.

机构信息

Departments of Molecular and Cellular Biochemistry, Kangwon National University School of Medicine, Chuncheon, Gangwon-do, 24341, South Korea.

Departments of Obstetrics and Gynecology, Kangwon National University School of Medicine, Chuncheon, Gangwon-do, 24341, South Korea.

出版信息

Exp Mol Med. 2019 Feb 15;51(2):1-12. doi: 10.1038/s12276-019-0212-8.

Abstract

Vascular smooth muscle cells (VSMCs) play an important role in maintaining vascular function. Inflammation-mediated VSMC dysfunction leads to atherosclerotic intimal hyperplasia and preeclamptic hypertension; however, the underlying mechanisms are not clearly understood. We analyzed the expression levels of microRNA-155 (miR-155) in cultured VSMCs, mouse vessels, and clinical specimens and then assessed its role in VSMC function. Treatment with tumor necrosis factor-α (TNF-α) elevated miR-155 biogenesis in cultured VSMCs and vessel segments, which was prevented by NF-κB inhibition. MiR-155 expression was also increased in high-fat diet-fed ApoE mice and in patients with atherosclerosis and preeclampsia. The miR-155 levels were inversely correlated with soluble guanylyl cyclase β1 (sGCβ1) expression and nitric oxide (NO)-dependent cGMP production through targeting the sGCβ1 transcript. TNF-α-induced miR-155 caused VSMC phenotypic switching, which was confirmed by the downregulation of VSMC-specific marker genes, suppression of cell proliferation and migration, alterations in cell morphology, and NO-induced vasorelaxation. These events were mitigated by miR-155 inhibition. Moreover, TNF-α did not cause VSMC phenotypic modulation and limit NO-induced vasodilation in aortic vessels of miR-155 mice. These findings suggest that NF-κB-induced miR-155 impairs the VSMC contractile phenotype and NO-mediated vasorelaxation by downregulating sGCβ1 expression. These data suggest that NF-κB-responsive miR-155 is a novel negative regulator of VSMC functions by impairing the sGC/cGMP pathway, which is essential for maintaining the VSMC contractile phenotype and vasorelaxation, offering a new therapeutic target for the treatment of atherosclerosis and preeclampsia.

摘要

血管平滑肌细胞 (VSMC) 在维持血管功能方面发挥着重要作用。炎症介导的 VSMC 功能障碍导致动脉粥样硬化内膜增生和子痫前期高血压;然而,其潜在机制尚不清楚。我们分析了培养的 VSMC、小鼠血管和临床标本中 microRNA-155 (miR-155) 的表达水平,然后评估了其在 VSMC 功能中的作用。肿瘤坏死因子-α (TNF-α) 处理可增加培养的 VSMC 和血管段中的 miR-155 生物发生,这可被 NF-κB 抑制所阻止。高脂肪饮食喂养的 ApoE 小鼠以及动脉粥样硬化和子痫前期患者的 miR-155 表达也增加。miR-155 水平与可溶性鸟苷酸环化酶 β1 (sGCβ1) 表达和通过靶向 sGCβ1 转录物的一氧化氮 (NO) 依赖性 cGMP 产生呈负相关。TNF-α 诱导的 miR-155 导致 VSMC 表型转换,这通过下调 VSMC 特异性标记基因、抑制细胞增殖和迁移、改变细胞形态以及 NO 诱导的血管舒张来证实。miR-155 抑制减轻了这些事件。此外,TNF-α不会引起 miR-155 小鼠主动脉血管的 VSMC 表型调节和限制 NO 诱导的血管舒张。这些发现表明,NF-κB 诱导的 miR-155 通过下调 sGCβ1 表达来损害 VSMC 收缩表型和 NO 介导的血管舒张。这些数据表明,NF-κB 反应性 miR-155 通过损害 sGC/cGMP 途径来抑制 VSMC 功能,这对于维持 VSMC 收缩表型和血管舒张至关重要,为治疗动脉粥样硬化和子痫前期提供了新的治疗靶点。

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