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DNMT3a epigenetic program regulates the HIF-2α oxygen-sensing pathway and the cellular response to hypoxia

机译:DNMT3a表观遗传程序调节HIF-2α氧气感应途径和细胞对缺氧的反应

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摘要

Epigenetic regulation of gene expression by DNA methylation plays a central role in the maintenance of cellular homeostasis. Here we present evidence implicating the DNA methylation program in the regulation of hypoxia-inducible factor (HIF) oxygen-sensing machinery and hypoxic cell metabolism. We show that DNA methyltransferase 3a (DNMT3a) methylates and silences the HIF-2α gene (EPAS1) in differentiated cells. Epigenetic silencing of EPAS1 prevents activation of the HIF-2α gene program associated with hypoxic cell growth, thereby limiting the proliferative capacity of adult cells under low oxygen tension. Naturally occurring defects in DNMT3a, observed in primary tumors and malignant cells, cause the unscheduled activation of EPAS1 in early dysplastic foci. This enables incipient cancer cells to exploit the HIF-2α pathway in the hypoxic tumor microenvironment necessary for the formation of cellular masses larger than the oxygen diffusion limit. Reintroduction of DNMT3a in DNMT3a-defective cells restores EPAS1 epigenetic silencing, prevents hypoxic cell growth, and suppresses tumorigenesis. These data support a tumor-suppressive role for DNMT3a as an epigenetic regulator of the HIF-2α oxygen-sensing pathway and the cellular response to hypoxia.
机译:DNA甲基化对基因表达的表观遗传调控在维持细胞稳态中起着核心作用。在这里,我们提供证据表明DNA甲基化程序参与缺氧诱导因子(HIF)氧气感应机制和缺氧细胞代谢的调节。我们显示DNA甲基转移酶3a(DNMT3a)甲基化并沉默分化细胞中的HIF-2α基因(EPAS1)。 EPAS1的表观遗传沉默可防止与缺氧细胞生长相关的HIF-2α基因程序的激活,从而限制了低氧张力下成体细胞的增殖能力。在原发性肿瘤和恶性细胞中观察到的DNMT3a中自然发生的缺陷会导致增生异常灶中EPAS1的异常激活。这使得初期癌细胞能够在缺氧肿瘤微环境中利用HIF-2α途径,以形成大于氧气扩散极限的细胞团。在DNMT3a缺陷细胞中重新引入DNMT3a,可恢复EPAS1表观遗传沉默,防止缺氧细胞生长,并抑制肿瘤发生。这些数据支持了DNMT3a作为HIF-2α氧气感应途径的表观遗传调控因子以及细胞对缺氧反应的肿瘤抑制作用。

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