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Upregulation of long non-coding RNA NNT-AS1 promotes osteosarcoma progression by inhibiting the tumor suppressive miR-320a

机译:长期非编码RNA NNT-AS1的上调通过抑制肿瘤抑制miR-320A来促进骨肉瘤进展

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Objective: To investigate the role and mechanism of action of nicotinamide nucleotide transhydrogenase antisense RNA 1 (NNT-AS1) in osteosarcoma (OS). Methods: Bioinformatic analysis suggested miR-320a as potential target of NNT-AS1. Influence of NNT-AS1 overexpression or knockdown on OS cell proliferation, colony-formation, apoptosis, migration and invasion capacity was first investigated. Expression levels of NNT-AS1, miR-320a, beta-catenin, RUNX2, IGF-1R, c-Myc, Cyclin D1 and MMP13 were also evaluated by RT-qPCR and western blotting accordingly. Xenograft models using U2OS and OS-732 cells with different NNT-AS1 gene modifications were constructed for tumor formation assay as well as evaluation of miR-320a, beta-catenin and RUNX2 expression in primary lesion. NNT-AS1-overexpressing U2OS cells and NNT-AS1-knockdown OS-732 cells were subject to miR-320a mimic and inhibitor transfection, respectively, to investigate the miR-320a dependency of the osteosarcoma-promoting role of NNT-AS1. Results: NNT-AS1 overexpression significantly increased proliferation, survival and mobility of U2OS cells in vitro as well as its tumor formation ability in vivo, while NNT-AS1 knockdown showed opposite effect on OS-732 cells. In both in vitro and in vivo model, NNT-AS1 expression level significantly correlated with that of beta-catenin, RUNX2, IGF-1R, c-Myc, Cyclin D1 and MMP13 as well as Akt phosphorylation level, and inversely correlated with miR-320a expression. Transfection of miR-320a mimic significantly inhibiter the promoting effect of NNT-AS1 on cell proliferation, survival and mobility of U2OS cells, while miR-320 inhibitor partially rescued that of OS-732 cells. Conclusion: NNT-As1 functions as a cancer-promoting lncRNA by downregulating miR-320a, thus increasing the protein expression level of beta-catenin, RUNX2 and IGF-1R as well as activation of Akt in osteosarcoma.
机译:目的:探讨烟酰胺核苷酸转氢酶反义RNA 1(NNT-AS1)在骨肉瘤(OS)中的作用的作用和机制。方法:生物信息分析建议MiR-320A作为NNT-AS1的潜在目标。首次研究了NNT-AS1过表达或敲低对OS细胞增殖,菌落形成,细胞凋亡,迁移和侵袭能力的影响。通过RT-QPCR和蛋白质印迹,还通过RT-QPCR和Western印迹评估NNT-AS1,MiR-320A,β-连环蛋白,RUNX2,IGF-1R,C-MYC,Cyclin D1和MMP13的表达水平。构建使用具有不同NNT-AS1基因修饰的U2OS和OS-732细胞的异种移植模型用于肿瘤形成测定以及在初级病变中的miR-320a,β-catenin和runx2表达的评估。 NNT-AS1-过度抑制的U2OS细胞和NNT-AS1-kexticalds OS-732细胞分别进行MIR-320A模拟和抑制剂转染,以研究NNT-AS1的促进骨肉瘤促进作用的miR-320a依赖性。结果:NNT-AS1过度表达在体外显着增加U2OS细胞的增殖,存活率和迁移率,以及其体内肿瘤形成能力,而NNT-AS1敲低显示对OS-732细胞的相反效果。在体外和体内模型中,NNT-AS1表达水平与β-连环蛋白,RUNX2,IGF-1R,C-MYC,Cyclin D1和MMP13以及AKT磷酸化水平显着相关,以及与miR相反320A表达。 MiR-320A的转染模拟显着抑制NNT-AS1对U2OS细胞细胞增殖,存活率和迁移率的促进作用,而MIR-320抑制剂部分地救出了OS-732细胞的影响。结论:NNT-AS1通过下调miR-320A作为癌症促进LNCRNA,从而增加β-连环蛋白,RUNX2和IGF-1R的蛋白质表达水平以及骨肉瘤中Akt的活化。

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