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AC016405.3, a novel long noncoding RNA, acts as a tumor suppressor through modulation of TET2 by microRNA‐19a‐5p sponging in glioblastoma

机译:AC016405.3是一种新型的长非编码RNA,可通过胶质母细胞瘤中的microRNA-19a-5p海绵调控TET2的作用来抑制肿瘤

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Long non‐coding RNAs (lncRNAs) are crucial regulators in various malignancies including glioblastoma multiforme (GBM). In the present study, we screened out a new lncRNA, AC016405.3, through a previous genome‐wide lncRNA microarray analysis in GBM. It showed that AC016405.3 was downregulated in GBM tissue specimens and cell lines, and it also illustrated that the downregulated AC016405.3 was closely correlated with several aggressive features of patients with GBM. Functionally, we found that overexpression of AC016405.3 suppressed GBM cells’ proliferation and metastasis using a gain of function experiment. We further showed that microRNA (miR)‐19a‐5p, a carcinogenic miRNA, was a downstream miRNA of AC016405.3. AC016405.3 was revealed as a target of miR‐19a‐5p, and overexpression of miR‐19a‐5p reversed the inhibitive effect of AC016405.3 on GBM cell proliferation and metastasis. Furthermore, a novel downstream gene of miR‐19a‐5p, TET2 , was identified through a constructed microarray analysis. We showed that TET2 was downregulated in GBM and was involved in miR‐19a‐5p‐mediated proliferation and metastasis by directly being targeted. Finally, through a western blot assay and a series of functional CCK‐8 and metastatic assays, we showed that AC016405.3 suppressed proliferation and metastasis through modulation of TET2 by sponging of miR‐19a‐5p in GBM cells. In summary, the findings of the current study identified a novel lncRNA and illustrated that AC016405.3, acting as an anti‐oncogene, suppressed GBM cell proliferation and metastasis by regulating TET through miR‐19a‐5p sponging. Our present study might provide a new axis in the molecular treatment of GBM.
机译:长的非编码RNA(lncRNA)是包括多形性胶质母细胞瘤(GBM)在内的各种恶性肿瘤的关键调控因子。在本研究中,我们通过GBM中以前的全基因组lncRNA芯片分析,筛选出了新的lncRNA AC016405.3。这表明AC016405.3在GBM组织标本和细胞系中被下调,也表明AC016405.3的下调与GBM患者的几种侵袭性特征密切相关。在功能上,我们通过功能增益实验发现AC016405.3的过表达抑制了GBM细胞的增殖和转移。我们进一步表明,致癌性miRNA microRNA(miR)-19a-5p是AC016405.3。的下游miRNA。 AC016405.3被揭示为miR-19a-5p的靶标,miR-19a-5p的过表达逆转了AC016405.3对GBM细胞增殖和转移的抑制作用。此外,通过构建的微阵列分析鉴定了miR-19a-5p的新型下游基因TET2。我们表明,TET2在GBM中被下调,并通过直接靶向而参与了miR-19a-5p介导的增殖和转移。最后,通过蛋白质印迹试验以及一系列功能性CCK-8和转移性试验,我们表明AC016405.3通过在GBM细胞中弥散miR-19a-5p来调节TET2,从而抑制了增殖和转移。总而言之,本研究的发现确定了一种新型的lncRNA,并说明AC016405.3作为一种抗癌基因,可通过miR-19a-5p海绵调控TET抑制GBM细胞的增殖和转移。我们目前的研究可能为GBM的分子治疗提供新的思路。

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