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Enhancer-bound Nrf2 licenses HIF-1α transcription under hypoxia to promote cisplatin resistance in hepatocellular carcinoma cells

机译:缺氧下的增强剂NRF2许可证HIF-1α转录以促进肝细胞癌细胞中的顺铂抗性

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摘要

Tumor microenvironment is hypoxic, which can cause resistance to chemotherapy, but the detailed mechanisms remain elusive. Here we find that mild hypoxia (5% O2) further increases cisplatin resistance in the already resistant HepG2/DDP but not the sensitive HepG2 cells. We find that Nrf2 is responsible for cisplatin resistance under hypoxia, as Nrf2 knockdown sensitizes HepG2/DDP cells while Nrf2 hyper-activation (though KEAP1 knockdown) increases resistance of HepG2 cells to cisplatin. Nrf2 binds to an enhancer element in the upstream of HIF-1α gene independently of hypoxia, promoting HIF-1α mRNA synthesis under hypoxic condition. As a result, Nrf2-dependent transcription counteracts HIF-1α degradation under mild hypoxia condition, leading to preferential cisplatin-resistance in HepG2/DDP cells. Our data suggest that Nrf2 regulation of HIF-1α could be an important mechanism for chemotherapy resistance in vivo.
机译:肿瘤微环境是缺氧,这可能导致化疗抗性,但细化机制仍然难以捉摸。在这里,我们发现轻度缺氧(5%O 2)进一步增加了已经抗性HepG2 / DDP的顺铂抗性,但不是敏感的HepG2细胞。我们发现NRF2负责缺氧下的顺铂抗性,因为NRF2敲低致敏HepG2 / DDP细胞,而NRF2超激活(虽然Keap1敲低)增加了HepG2细胞对顺铂的阻力。 NRF2与HIF-1α基因上游的增强子元素无关,独立于缺氧,在缺氧条件下促进HIF-1αmRNA合成。结果,NRF2依赖性转录在轻度缺氧条件下抵消HIF-1α降解,导致HepG2 / DDP细胞中的优先顺铂抗性。我们的数据表明,HIF-1α的NRF2调节可能是体内化疗抗性的重要机制。

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