首页> 外文期刊>Stem Cell Research & Therapy >Long non-coding RNA HIF1A-AS2 facilitates adipose-derived stem cells (ASCs) osteogenic differentiation through miR-665/IL6 axis via PI3K/Akt signaling pathway
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Long non-coding RNA HIF1A-AS2 facilitates adipose-derived stem cells (ASCs) osteogenic differentiation through miR-665/IL6 axis via PI3K/Akt signaling pathway

机译:长的非编码RNA HIF1A-AS2通过PI3K / AKT信号通路通过MIR-665 / IL6轴促进脂肪衍生的干细胞(ASCS)骨质发生分化

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摘要

This study was aimed to investigate the role and specific molecular mechanism of HIF1A-AS2/miR-665/IL6 axis in regulating osteogenic differentiation of adipose-derived stem cells (ASCs) via the PI3K/Akt signaling pathway. RNAs' expression profile in normal/osteogenic differentiation-induced ASCs (osteogenic group) was from the Gene Expression Omnibus database. The analysis was carried out using Bioconductor of R. Gene Set Enrichment Analysis and Kyoto Encyclopedia of Genes and Genomes dataset were applied to identify up- and downregulated signaling pathways. Co-expression network of specific lncRNAs and mRNAs was structured by Cytoscape, while binding sites amongst lncRNA, mRNA, and miRNA were predicted by TargetScan and miRanda. ASCs were derived from human adipose tissue and were authenticated by flow cytometry. ASC cell function was surveyed by alizarin red and alkaline phosphatase (ALP) staining. Molecular mechanism of HIF1A-AS2/miR-665/IL6 axis was investigated by RNAi, cell transfection, western blot, and qRT-PCR. RNA target relationships were validated by dual-luciferase assay. HIF1A-AS2 and IL6 were highly expressed while miR-665 was lowly expressed in induced ASCs. HIF1A-AS2 and IL6 improved the expression level of osteoblast markers Runx2, Osterix, and Osteocalcin and also accelerated the formation of calcium nodule and ALP activity, yet miR-665 had opposite effects. HIF1A-AS2 directly targeted miR-665, whereas miR-665 repressed IL6 expression. Moreover, the HIF1A-AS2/miR-665/IL6 regulating axis activated the PI3K/Akt signaling pathway. LncRNA HIF1A-AS2 could sponge miR-665 and hence upregulate IL6, activate the PI3K/Akt signaling pathway, and ultimately promote ASC osteogenic differentiation.
机译:该研究旨在探讨HIF1A-AS2 / miR-665 / IL6轴在通过PI3K / AKT信号通路调节脂肪衍生的干细胞(ASCS)的成骨分化的作用和特异性分子机制。来自正常/骨质发生分化诱导的ASC(骨质发生基团)的RNA的表达谱来自基因表达OMNIBUS数据库。使用R.基因设定富集分析的生物导体进行分析,并施用基因和基因组的Kyoto百科全书以鉴定上调和下调的信号通路。特异性LNCRNA和MRNA的共表达网络由Cytoscape构建,而目标士康和Miranda预测了LNCrNA,mRNA和miRNA中的结合位点。 ASCS衍生自人脂肪组织,并通过流式细胞术进行认证。通过茜素红和碱性磷酸酶(ALP)染色来调查ASC细胞功能。通过RNAi,细胞转染,Western印迹和QRT-PCR研究了HIF1A-AS2 / miR-665 / IL6轴的分子机制。通过双荧光素酶测定验证RNA靶标关系。 HIF1A-AS2和IL6高表达,而MIR-665在诱导的ASC中低于表达。 HIF1A-AS2和IL6改善了成骨细胞标志物RUNX2,Ostorix和骨钙蛋白的表达水平,也加速了钙结节和ALP活性的形成,但miR-665具有相反的效果。 HIF1A-AS2直接针对miR-665,而MiR-665压抑IL6表达。此外,HIF1A-AS2 / MIR-665 / IL6调节轴激活了PI3K / AKT信号通路。 LNCRNA HIF1A-AS2可以海绵MIR-665,因此上调IL6,激活PI3K / AKT信号通路,最终促进ASC骨质发生分化。

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