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首页> 外文期刊>Arthritis research & therapy. >Hypoxia-induced miR-191-C/EBPβ signaling regulates cell proliferation and apoptosis of fibroblast-like synoviocytes from patients with rheumatoid arthritis
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Hypoxia-induced miR-191-C/EBPβ signaling regulates cell proliferation and apoptosis of fibroblast-like synoviocytes from patients with rheumatoid arthritis

机译:低氧诱导的miR-191-C /EBPβ信号调节类风湿关节炎患者成纤维样滑膜细胞的增殖和凋亡

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Hypoxia plays an important role in the proliferation of rheumatoid arthritis fibroblast-like synoviocytes (RA-FLS), leading to pathology of RA. This study was conducted to evaluate hypoxia-induced microRNAs (hypoxamiR) in RA-FLS and its role in the function of RA-FLS. RA-FLS were cultured under normoxia (21% O2) or hypoxia (3% O2) condition, followed by a microRNA (miRNA) array analysis. The upregulation of miR-191 by hypoxia was confirmed in RA-FLS and FLS from osteoarthritis (OA) patients by quantitative real-time polymerase chain reaction (RT-PCR). Transfection of miR-191 mimic and inhibitor was used to investigate the function of miR-191 in RA-FLS. The functional targets of miR-191 were predicted by bioinfomatics and then validated by reporter gene assay. A subset of miRNAs was identified to be induced by hypoxia including miR-191. The upregulation of miR-191 was found to be specific in hypoxic RA-FLS, compared to hypoxic OA-FLS. We observed that miR-191 in RA-FLS increased cellular proliferation via promoting G1/S transition of the cell cycle and suppressed cell apoptosis induced by cell starvation. Bioinformatical analysis and experimental assays identified CCAAT/enhancer binding protein β (C/EBPβ) as a target gene of miR-191 in RA-FLS. Enforced expression of C/EBPβ rescued the cellular phenotypes induced by miR-191. In addition, an inverse correlation between the C/EBPβ level and hypoxia stimulation was found in RA-FLS, and overexpression of C/EBPβ could partly rescue the hypoxia-induced cell proliferation. We demonstrated the miR-191-C/EBPβ signaling pathway mediating the hypoxia-induced cell proliferation in RA.
机译:缺氧在类风湿关节炎成纤维样滑膜细胞(RA-FLS)的增殖中起重要作用,导致RA的病理。进行这项研究以评估RA-FLS中低氧诱导的microRNA(hypoxamiR)及其在RA-FLS功能中的作用。 RA-FLS在常氧(21%O2)或低氧(3%O2)条件下培养,然后进行microRNA(miRNA)阵列分析。通过定量实时聚合酶链反应(RT-PCR)在来自骨关节炎(OA)患者的RA-FLS和FLS中证实了低氧引起的miR-191上调。使用miR-191模拟物和抑制剂的转染来研究miR-191在RA-FLS中的功能。通过生物信息学预测miR-191的功能靶标,然后通过报告基因测定法对其进行验证。 miRNA的一个子集被确定为由缺氧诱导,包括miR-191。与低氧OA-FLS相比,发现miR-191的上调在低氧RA-FLS中是特异性的。我们观察到,RA-FLS中的miR-191通过促进细胞周期的G1 / S过渡和抑制细胞饥饿诱导的细胞凋亡来增加细胞增殖。生物信息学分析和实验分析确定CCAAT /增强子结合蛋白β(C /EBPβ)是RA-FLS中miR-191的靶基因。 C /EBPβ的强制表达挽救了miR-191诱导的细胞表型。此外,在RA-FLS中发现C /EBPβ水平与缺氧刺激呈负相关,并且C /EBPβ的过表达可以部分挽救缺氧诱导的细胞增殖。我们证明了miR-191-C /EBPβ信号通路介导了RA中低氧诱导的细胞增殖。

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