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HIF-1α and HIF-2α Differently Regulate the Radiation Sensitivity of NSCLC Cells

机译:HIF-1α和HIF-2α分别调节NSCLC细胞的放射敏感性

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摘要

The hypoxia-inducible transcription factors (HIF)-1/2α are the main oxygen sensors which regulate the adaptation to intratumoral hypoxia. The aim of this study was to assess the role of the HIF proteins in regulating the radiation response of a non-small cell lung cancer (NSCLC) in vitro model. To directly assess the unique and overlapping functions of HIF-1α and HIF-2α, we use CRISPR gene-editing to generate isogenic H1299 non-small cell lung carcinoma cells lacking HIF-1α, HIF-2α or both. We found that in HIF1 knockout cells, HIF-2α was strongly induced by hypoxia compared to wild type but the reverse was not seen in HIF2 knockout cells. Cells lacking HIF-1α were more radiation resistant than HIF2 knockout and wildtype cells upon hypoxia, which was associated with a reduced recruitment of γH2AX foci directly after irradiation and not due to differences in proliferation. Conversely, double-HIF1/2 knockout cells were most radiation sensitive and had increased γH2AX recruitment and cell cycle delay. Compensatory HIF-2α activity in HIF1 knockout cells is the main cause of this radioprotective effect. Under hypoxia, HIF1 knockout cells uniquely had a strong increase in lactate production and decrease in extracellular pH. Using genetically identical HIF-α isoform-deficient cells we identified a strong radiosensitizing of HIF1, but not of HIF2, which was associated with a reduced extracellular pH and reduced glycolysis.
机译:缺氧诱导转录因子(HIF)-1 /2α是调节对肿瘤内缺氧的适应性的主要氧传感器。这项研究的目的是评估HIF蛋白在调节非小细胞肺癌(NSCLC)体外模型的放射反应中的作用。为了直接评估HIF-1α和HIF-2α的独特和重叠功能,我们使用CRISPR基因编辑来生成缺少HIF-1α,HIF-2α或两者的等基因H1299非小细胞肺癌细胞。我们发现,在HIF1基因敲除细胞中,与野生型相比,HIF-2α受到缺氧的强烈诱导,但在HIF2基因敲除细胞中却未见相反的现象。缺氧时,缺少HIF-1α的细胞比HIF2敲除和野生型细胞具有更高的辐射耐受性,这与直接照射后γH2AX灶募集减少有关,而不是由于增殖差异所致。相反,双HIF1 / 2敲除细胞对辐射最敏感,并增加了γH2AX募集和细胞周期延迟。 HIF1基因敲除细胞中的补偿性HIF-2α活性是这种放射防护作用的主要原因。在缺氧条件下,HIF1敲除细胞独特地具有强烈的乳酸生成增加和细胞外pH降低。使用遗传上相同的HIF-α同工型缺陷细胞,我们确定了HIF1的强烈放射增敏作用,但对HIF2却没有,这与细胞外pH降低和糖酵解降低有关。

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