首页> 美国卫生研究院文献>International Journal of Oncology >HAF drives the switch of HIF-1α to HIF-2α by activating the NF-κB pathway leading to malignant behavior of T24 bladder cancer cells
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HAF drives the switch of HIF-1α to HIF-2α by activating the NF-κB pathway leading to malignant behavior of T24 bladder cancer cells

机译:HAF通过激活NF-κB途径驱动HIF-1α向HIF-2α的转换从而导致T24膀胱癌细胞的恶性行为

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摘要

Hypoxia is a characteristic feature of solid tumors, leading to malignant behavior. During this process, HIF family members (HIFs) and the NF-κB pathway are activated. In addition, the hypoxia-associated factor (HAF) is reported to participate in the regulation of HIFs. However, the precise relationship among HIFs, HAF and the NF-κB pathway in bladder cancer (BC) remains unknown. In the current investigation, T24 BC cells were exposed to hypoxia, or by plasmid transfection to overexpress HAF or RelA (P65) to demonstrate their roles. The results indicate that hypoxia leads to the elevation of HAF plus activation of the NF-κB pathway, accompanied by the switch of HIF-1α to HIF-2α, resulting in the enhanced ability of malignancy in T24 cells. In order to further demonstrate the significance of this switch, HIF-1α and HIF-2α were co-transfected into T24 cells with HIF-β, respectively. The following results indicate that the T24hif-2α/β cells show enhanced ability of malignancy, accompanied by the maintenance of stem-cell markers, but the T24hif-1α/β cells show higher expression of metabolism-related genes. Boyden assays and wound-healing assays indicate the enhanced ability of malignancy for T24hif-2α/β. Thus, we conclude that on the hypoxic microenvironment, the switching of HIF-1α to HIF-2α, which is driven by HAF through activating the NF-κB pathway, contributes to the malignancy of T24 cells, accompanied by the maintenance of stem-cell markers. This provides us an avenue for understanding the progression of bladder cancer.
机译:缺氧是实体瘤的特征,导致恶性行为。在此过程中,HIF家族成员(HIF)和NF-κB途径被激活。此外,据报道缺氧相关因子(HAF)参与HIF的调节。然而,膀胱癌(BC)中的HIF,HAF和NF-κB通路之间的确切关系仍然未知。在当前的研究中,T24 BC细胞暴露于缺氧状态,或通过质粒转染使过表达HAF或RelA(P65)发挥作用。结果表明,低氧导致HAF升高以及NF-κB通路的激活,伴随着HIF-1α向HIF-2α的转换,导致T24细胞的恶性能力增强。为了进一步证明这种转换的重要性,分别将HIF-1α和HIF-2α与HIF-β共转染到T24细胞中。以下结果表明,T24 hif-2α/β细胞显示出增强的恶性能力,并伴有干细胞标记物的维持,而T24 hif-1α/β >细胞显示代谢相关基因的更高表达。博伊登试验和伤口愈合试验表明,T24 hif-2α/β具有增强的恶性能力。因此,我们得出结论,在缺氧的微环境中,由HAF通过激活NF-κB途径驱动的HIF-1α向HIF-2α的转换,有助于T24细胞的恶性肿瘤,并伴随着干细胞的维持标记。这为我们提供了了解膀胱癌进展的途径。

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