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Overexpression of SNHG12 regulates the viability and invasion of renal cell carcinoma cells through modulation of HIF1α

机译:SNHG12的过表达通过调节HIF1α调节肾癌细胞的生存能力和侵袭能力

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摘要

Cumulative evidences demonstrated the aberrant overexpression of Small Nucleolar RNA Host Gene 12 (SNHG12) in diverse human cancer. However, the expression status and involvement of SNHG12 in renal cell carcinoma is still elusive. The expression of SNHG12 was determined by q-PCR. The transcriptional regulation was interrogated by luciferase reporter assay. Cell viability was measured with CCK-8 kit. The anchorage-independent was evaluated by soft agar assay. Cell apoptosis was analyzed by Annexin V/7-AAD double staining. The migration and invasion were determined by trans-well assay and wound scratch closure. The in vivo tumor growth was monitored in xenograft mice model. Protein expression was quantified by immunoblotting. SNHG12 was aberrantly up-regulated in renal carcinoma both in vivo and in vitro. High expression of SNHG12 associated with poor prognosis. Deficiency of SNHG12 significantly suppressed cell viability, anchorage-independent growth and induced apoptosis. In addition, SNHG12 silencing inhibited migrative and invasive in vitro and xenograft tumor growth in vivo. Mechanistically, SNHG12 modulated HIF1α expression via competing with miR-199a-5p, which consequently contributed to its oncogenic potential. MiR-199a-5p inhibition severely compromised SNHG12 silencing-elicited tumor repressive effects. Our data uncovered a crucial role of SNHG12-miR-199a-5p-HIF1α axis in human renal cancer.
机译:累积证据表明,小核仁RNA宿主基因12(SNHG12)在各种人类癌症中均异常表达。然而,SNHG12在肾细胞癌中的表达状态和参与程度仍然难以捉摸。通过q-PCR确定SNHG12的表达。通过荧光素酶报告基因测定来询问转录调控。用CCK-8试剂盒测量细胞活力。通过软琼脂分析评估不依赖于锚定。通过膜联蛋白V / 7-AAD双重染色分析细胞凋亡。迁移和侵袭通过trans-well测定法和伤口划痕闭合来确定。在异种移植小鼠模型中监测体内肿瘤生长。通过免疫印迹定量蛋白质表达。 SNHG12在体内和体外均在肾癌中异常上调。 SNHG12的高表达与预后不良有关。 SNHG12的缺乏会显着抑制细胞活力,不依赖锚定的生长并诱导凋亡。此外,SNHG12沉默抑制了迁移和侵入性体外和体内异种移植肿瘤的生长。从机制上讲,SNHG12通过与miR-199a-5p竞争来调节HIF1α表达,因此有助于其致癌潜力。 MiR-199a-5p抑制严重损害了SNHG12沉默引起的肿瘤抑制作用。我们的数据揭示了SNHG12-miR-199a-5p-HIF1α轴在人类肾癌中的关键作用。

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