Department of Nuclear Medicine, Key Laboratory of Nanobiological Technology of Chinese Ministry of Health, Xiangya Hospital, Central South University, Changsha 410008, Hunan, China.
Department of Biliary Surgery, Xiangya Hospital, Central South University. Changsha 410008, Hunan, China.
Aging (Albany NY). 2020 Dec 3;13(1):364-375. doi: 10.18632/aging.202137.
Tumor microenvironment is hypoxic, which can cause resistance to chemotherapy, but the detailed mechanisms remain elusive. Here we find that mild hypoxia (5% O) 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 .
肿瘤微环境是缺氧的,这会导致对化疗的耐药,但详细的机制仍不清楚。在这里,我们发现轻度缺氧(5% O)进一步增加了已经耐药的 HepG2/DDP 对顺铂的耐药性,但对敏感的 HepG2 细胞没有影响。我们发现 Nrf2 是缺氧下顺铂耐药的原因,因为 Nrf2 敲低可使 HepG2/DDP 细胞敏感,而 Nrf2 过度激活(尽管 KEAP1 敲低)则增加 HepG2 细胞对顺铂的耐药性。Nrf2 在缺氧条件下独立于缺氧与 HIF-1α 基因的上游增强子元件结合,促进 HIF-1α mRNA 的合成。结果,Nrf2 依赖性转录在轻度缺氧条件下抵消了 HIF-1α 的降解,导致 HepG2/DDP 细胞对顺铂的耐药性增强。我们的数据表明,Nrf2 对 HIF-1α 的调节可能是化疗耐药的一个重要机制。