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首页> 外文期刊>The Korean Journal of Physiology & Pharmacology >Silencing MR-1 attenuates atherosclerosis in ApoE?/? mice induced by angiotensin II through FAK-Akt–mTOR-NF-kappaB signaling pathway
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Silencing MR-1 attenuates atherosclerosis in ApoE?/? mice induced by angiotensin II through FAK-Akt–mTOR-NF-kappaB signaling pathway

机译:沉默MR-1可减轻ApoE?/?中的动脉粥样硬化。血管紧张素II通过FAK-Akt–mTOR-NF-kappaB信号通路诱导的小鼠

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摘要

Myofibrillogenesis regulator-1 (MR-1) is a novel protein involved in cellular proliferation, migration, inflammatory reaction and signal transduction. However, little information is available on the relationship between MR-1 expression and the progression of atherosclerosis. Here we report atheroprotective effects of silencing MR-1 in a model of Ang II-accelerated atherosclerosis, characterized by suppression focal adhesion kinase (FAK) and nuclear factor kappaB (NF-κB) signaling pathway, and atherosclerotic lesion macrophage content. In this model, administration of the siRNA-MR-1 substantially attenuated Ang II-accelerated atherosclerosis with stabilization of atherosclerotic plaques and inhibited FAK, Akt, mammalian target of rapamycin (mTOR) and NF-kB activation, which was associated with suppression of inflammatory factor and atherogenic gene expression in the artery. In vitro studies demonstrated similar changes in Ang II-treated vascular smooth muscle cells (VSMCs) and macrophages: siRNA-MR-1 inhibited the expression levels of proinflammatory factor. These studies uncover crucial proinflammatory mechanisms of Ang II and highlight actions of silencing MR-1 to inhibit Ang II signaling, which is atheroprotective.
机译:肌原纤维生成调节物1(MR-1)是一种参与细胞增殖,迁移,炎症反应和信号转导的新型蛋白质。但是,关于MR-1表达与动脉粥样硬化进展之间关系的信息很少。在这里,我们报告沉默Ang-1加速动脉粥样硬化模型中的MR-1的动脉粥样硬化保护作用,其特征在于抑制粘着斑激酶(FAK)和核因子kappaB(NF-κB)信号传导途径以及动脉粥样硬化病变巨噬细胞含量。在该模型中,siRNA-MR-1的给药可显着减缓Ang II加速的动脉粥样硬化,并稳定动脉粥样硬化斑块,并抑制FAK,Akt,雷帕霉素(mTOR)和NF-kB活化的哺乳动物靶点,这与抑制炎症有关动脉中动脉粥样硬化因子和动脉粥样硬化基因的表达。体外研究表明,Ang II处理的血管平滑肌细胞(VSMC)和巨噬细胞具有相似的变化:siRNA-MR-1抑制促炎因子的表达水平。这些研究揭示了Ang II的关键促炎机制,并强调了使MR-1沉默以抑制具有抗动脉粥样硬化作用的Ang II信号传导的作用。

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