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首页> 外文期刊>American Journal of Translational Research >miR-371, miR-138, miR-544, miR-145, and miR-214 could modulate Th1/Th2 balance in asthma through the combinatorial regulation of Runx3
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miR-371, miR-138, miR-544, miR-145, and miR-214 could modulate Th1/Th2 balance in asthma through the combinatorial regulation of Runx3

机译:miR-371,miR-138,miR-544,miR-145和miR-214可以通过Runx3的联合调节来调节哮喘中的Th1 / Th2平衡

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Asthma is tightly related to the imbalance of Th1/Th2 cells, and Runx3 plays a pivotal role in the differentiation of T helper cells. The present study aimed to investigate dysregulated microRNAs that may target Runx3 in CD4+ T cells from asthmatic patients and reveal Runx3 function in Th1/Th2 balance regulation. We detected the levels of Th1- and Th2-related cytokines by ELISA and analyzed the differentiation marker gene of T helper cells by qRT-PCR. Results indicated that an imbalance of Th1/Th2 cells was present in our asthmatic subject. Runx3 expression was reduced in the CD4+ T cells from asthmatic patients. Overexpression of Runx3 could restore the Th1/Th2 balance. After performing microRNA microarray assay, we found a series of microRNAs that were considerably altered in the CD4+ T cells from asthmatic patients. Among these upregulated microRNAs, eight microRNAs that may target Runx3 were selected by bioinformatics prediction. Five microRNAs, namely miR-371, miR-138, miR-544, miR-145, and miR-214, were confirmed by qRT-PCR and selected as candidate microRNAs. Luciferase reporter assay showed that these five microRNAs could directly target the 3’-UTR of Runx3. However, only simultaneous inhibition of these five microRNAs could alter the expression of Runx3. Most importantly, only simultaneous inhibition could improve the Th1/Th2 balance. Thus, we suggest that miR-371, miR-138, miR-544, miR-145, and miR-214 can modulate the Th1/Th2 balance in asthma by regulating Runx3 in a combinatorial manner.
机译:哮喘与Th1 / Th2细胞失衡密切相关,Runx3在T辅助细胞的分化中起关键作用。本研究旨在研究可能针对哮喘患者CD4 + T细胞中Runx3的失调的microRNA,并揭示Runx3在Th1 / Th2平衡调节中的功能。我们通过ELISA检测了Th1和Th2相关细胞因子的水平,并通过qRT-PCR分析了T辅助细胞的分化标记基因。结果表明在我们的哮喘患者中存在Th1 / Th2细胞失衡。哮喘患者的CD4 + T细胞中Runx3表达降低。 Runx3的过表达可以恢复Th1 / Th2平衡。进行microRNA微阵列分析后,我们发现了一系列来自哮喘患者的CD4 + T细胞中的microRNA发生了很大变化。在这些上调的microRNA中,通过生物信息学预测选择了可能靶向Runx3的八个microRNA。通过qRT-PCR确认了五个microRNA,即miR-371,miR-138,miR-544,miR-145和miR-214,并被选为候选microRNA。萤光素酶报告基因检测表明,这五个microRNA可以直接靶向Runx3的3'-UTR。但是,只有同时抑制这五个microRNA才能改变Runx3的表达。最重要的是,只有同时抑制才能改善Th1 / Th2平衡。因此,我们建议miR-371,miR-138,miR-544,miR-145和miR-214可以通过组合调节Runx3来调节哮喘中的Th1 / Th2平衡。

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