首页> 美国卫生研究院文献>Aging (Albany NY) >Hypoxia-induced let-7f-5p/TARBP2 feedback loop regulates osteosarcoma cell proliferation and invasion by inhibiting the Wnt signaling pathway
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Hypoxia-induced let-7f-5p/TARBP2 feedback loop regulates osteosarcoma cell proliferation and invasion by inhibiting the Wnt signaling pathway

机译:低氧诱导的let-7f-5p / TARBP2反馈回路通过抑制Wnt信号通路调节骨肉瘤细胞的增殖和侵袭

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摘要

Osteosarcoma (OS) is the most common bone tumor in children and adolescents and is characterized by high metastatic and recurrence rates. In the past, it has been shown that microRNAs may play critical roles in hypoxia-related OS proliferation and invasion. However, the mechanisms by which OS cells acquire this malignant phenotype have remained largely unknown. In the present study, we report that let-7f-5p and TARBP2 were expressed in lower amounts in human OS cell lines when compared with the hFOB normal human osteoblastic cell line; however, both types of cells were repressed by hypoxia. let-7f-5p and TARBP2 significantly inhibited the proliferation and invasion of OS cells. Furthermore, TARBP2 as a downstream and functional target of let-7f-5p regulated the expression of let-7f-5p, and there was a regulatory feedback loop between let-7f-5p and TARBP2. This loop reduced the expression of let-7f-5p and TARBP2 in OS cells to a very low level, which was induced by hypoxia. Furthermore, the hypoxia-induced let-7f-5p/TARBP2 feedback loop contributed to activation of the Wnt signaling pathway. Taken together, our data clearly showed that the feedback loop between let-7f-5p and TARBP2 induced by the hypoxia-promoted OS cell malignant phenotype increased with activation of the Wnt signaling pathway.
机译:骨肉瘤(OS)是儿童和青少年中最常见的骨肿瘤,其特点是转移和复发率高。过去,已有研究表明microRNA在与缺氧相关的OS增殖和入侵中起关键作用。然而,OS细胞获得这种恶性表型的机制仍然很大程度上未知。在本研究中,我们报道与hFOB正常人成骨细胞系相比,let-7f-5p和TARBP2在人OS细胞系中的表达量较低;然而,两种类型的细胞都被缺氧所抑制。 let-7f-5p和TARBP2显着抑制OS细胞的增殖和侵袭。此外,TARBP2作为let-7f-5p的下游和功能靶标调节了let-7f-5p的表达,并且let-7f-5p和TARBP2之间存在一个调节反馈回路。该循环将缺氧诱导的OS细胞中let-7f-5p和TARBP2的表达降低到非常低的水平。此外,低氧诱导的let-7f-5p / TARBP2反馈回路有助于激活Wnt信号通路。两者合计,我们的数据清楚地表明,由低氧促进的OS细胞恶性表型诱导的let-7f-5p与TARBP2之间的反馈环随Wnt信号通路的激活而增加。

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