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KDM2 Family Members are Regulated by HIF-1 in Hypoxia

机译:HDM-1在缺氧状态下调节KDM2家庭成员

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摘要

Hypoxia is not only a developmental cue but also a stress and pathological stimulus in many human diseases. The response to hypoxia at the cellular level relies on the activity of the transcription factor family, hypoxia inducible factor (HIF). HIF-1 is responsible for the acute response and transactivates a variety of genes involved in cellular metabolism, cell death, and cell growth. Here, we show that hypoxia results in increased mRNA levels for human lysine (K)-specific demethylase 2 (KDM2) family members, KDM2A and KDM2B, and also for Drosophila melanogaster KDM2, a histone and protein demethylase. In human cells, KDM2 family member’s mRNA levels are regulated by HIF-1 but not HIF-2 in hypoxia. Interestingly, only KDM2A protein levels are significantly induced in a HIF-1-dependent manner, while KDM2B protein changes in a cell type-dependent manner. Importantly, we demonstrate that in human cells, KDM2A regulation by hypoxia and HIF-1 occurs at the level of promoter, with HIF-1 binding to the KDM2A promoter being required for RNA polymerase II recruitment. Taken together, these results demonstrate that KDM2 is a novel HIF target that can help coordinate the cellular response to hypoxia. In addition, these results might explain why KDM2 levels are often deregulated in human cancers.
机译:缺氧不仅是许多人类疾病的发展线索,还是应激和病理刺激。在细胞水平上对缺氧的反应依赖于转录因子家族缺氧诱导因子(HIF)的活性。 HIF-1负责急性反应并激活涉及细胞代谢,细胞死亡和细胞生长的多种基因。在这里,我们显示缺氧导致人类赖氨酸(K)特异性脱甲基酶2(KDM2)家庭成员KDM2A和KDM2B,以及果蝇黑腹KDM2,组蛋白和蛋白质脱甲基酶的mRNA水平升高。在人类细胞中,缺氧条件下KDM2家族成员的mRNA水平受HIF-1调节,但不受HIF-2调节。有趣的是,仅KDM2A蛋白水平以HIF-1依赖性方式被显着诱导,而KDM2B蛋白则以细胞类型依赖性方式改变。重要的是,我们证明了在人类细胞中,缺氧和HIF-1对KDM2A的调控发生在启动子水平,而RNA聚合酶II募集需要HIF-1与KDM2A启动子结合。综上所述,这些结果表明KDM2是新型HIF靶标,可帮助协调细胞对缺氧的反应。此外,这些结果可能可以解释为什么人类癌症中经常会放松KDM2的水平。

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