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首页> 外文期刊>Journal of cellular biochemistry. >LncRNA‐RP11‐296A18.3/miR‐138/HIF1A Pathway Regulates the Proliferation ECM Synthesis of Human Nucleus Pulposus Cells (HNPCs)
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LncRNA‐RP11‐296A18.3/miR‐138/HIF1A Pathway Regulates the Proliferation ECM Synthesis of Human Nucleus Pulposus Cells (HNPCs)

机译:LNCRNA-RP11-296A18.3 / MIR-138 / HIF1A途径调节人核牙髓细胞的增殖ECM合成(HNPC)

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ABSTRACT During the process of Intervertebral disc degeneration (IDD), nucleus pulposus apoptosis increases, extracellular matrix (ECM) alters and/or degrades, abnormal proliferation of cells forms cell clusters, and the expression of various inflammatory factors increases. Thus, regulation of human nucleus pulposus cell (HNPC) proliferation and ECM synthesis present promising strategies for IDD treatment. Accumulating evidence indicates that non‐coding RNAs are involved in various cellular processes, including cell proliferation, differentiation, apoptosis, and metastasis. High expression of long non‐coding RNA (lncRNA) RP11‐296A18.3, as well as a low expression of miR‐138 during the IDD process has been reported; yet their functional roles in HNPC proliferation and ECM synthesis still remain unclear. MTT and BrdU assays showed that knockdown of RP11‐296A18.3 inhibited the proliferation of HNPC. The ECM marker, MMP‐13 and Collagen I expressions were also reduced. Bioinformatics target prediction, qPCR, and luciferase assays identified LncRNA‐RP11‐296A18.3 interacted with miR‐138. Moreover, RP11‐296A18.3 regulates HNPC proliferation and ECM synthesis through miR‐138. As the target gene of miR‐138, hypoxia‐inducible factor 1‐alpha (HIF1A) was closely associated with cell proliferation which was also regulated by RP11‐296A18.3 via miR‐138. Immunochemistry and qPCR results showed that miR‐138 expression was inversely correlated to RP11‐296A18.3 and HIF1A in IDD tissues, respectively; RP11‐296A18.3 was positively correlated to HIF1A. We revealed that RP11‐296A18.3 promote HIF1A expression through sponging miR‐138, thus to promote HNPC proliferation and ECM synthesis. Targeting RP11‐296A18.3 to rescue miR‐138 expression in HNPCs and IDD tissues presents a promising strategy for IDD improvement. J. Cell. Biochem. 118: 4862–4871, 2017. ? 2017 Wiley Periodicals, Inc.
机译:摘要在椎间盘退变(IDD)的过程中,核骨盆凋亡增加,细胞外基质(ECM)改变和/或降解,细胞异常增殖形成细胞簇,以及各种炎症因子的表达增加。因此,人核牙髓细胞(HNPC)增殖和ECM综合的调节呈现了IDD治疗的有希望的策略。累积证据表明非编码RNA参与各种细胞过程,包括细胞增殖,分化,细胞凋亡和转移。报道了在IDD过程中长的长非编码RNA(LNCRNA)RP11-296A18.3以及MIR-138的低表达的高表达;然而,它们在HNPC增殖和ECM合成中的功能作用仍然尚不清楚。 MTT和BRDU测定显示RP11-296A18.3的敲低抑制了HNPC的增殖。 ECM标记物,MMP-13和胶原蛋白也减少了。生物信息学靶预测,QPCR和荧​​光素酶测定鉴定了LNCRNA-RP11-296A18.3与miR-138相互作用。此外,RP11-296A18.3通过MIR-138调节HNPC增殖和ECM合成。作为miR-138的靶基因,缺氧诱导因子1-α(HIF1a)与细胞增殖密切相关,所述细胞增殖也通过MIR-138调节。免疫化学和QPCR结果表明,MIR-138表达分别与IDD组织中的RP11-296A18.3和HIF1A相反; RP11-296A18.3与HIF1A呈正相关。我们透露,RP11-296A18.3通过海绵MIR-138促进HIF1A表达,从而促进HNPC增殖和ECM合成。靶向RP11-296A18.3以拯救MIR-138在HNPCS和IDD组织中的表达呈现了一个有希望的IDD改进的策略。 J.Cell。生物学习。 118:4862-4871,2017 2017年Wiley期刊,Inc。

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