Jehanno Charly, Le Goff Pascale, Habauzit Denis, Le Page Yann, Lecomte Sylvain, Lecluze Estelle, Percevault Frédéric, Avner Stéphane, Métivier Raphaël, Michel Denis, Flouriot Gilles
Inserm, EHESP, Irset (Institut de Recherche en Santé, Environnement et Travail)-UMR S1085, Rennes University, 35000 Rennes, France.
French Agency for Food, Environmental and Occupational Health & Safety (ANSES), Toxicology of Contaminants Unit, 35300 Fougères, France.
Cancers (Basel). 2022 Oct 8;14(19):4934. doi: 10.3390/cancers14194934.
Estrogen receptor-alpha (ERα) is the driving transcription factor in 70% of breast cancers and its activity is associated with hormone dependent tumor cell proliferation and survival. Given the recurrence of hormone resistant relapses, understanding the etiological factors fueling resistance is of major clinical interest. Hypoxia, a frequent feature of the solid tumor microenvironment, has been described to promote endocrine resistance by triggering ERα down-regulation in both in vitro and in vivo models. Yet, the consequences of hypoxia on ERα genomic activity remain largely elusive. In the present study, transcriptomic analysis shows that hypoxia regulates a fraction of ERα target genes, underlying an important regulatory overlap between hypoxic and estrogenic signaling. This gene expression reprogramming is associated with a massive reorganization of ERα cistrome, highlighted by a massive loss of ERα binding sites. Profiling of enhancer acetylation revealed a hormone independent enhancer activation at the vicinity of genes harboring hypoxia inducible factor (HIFα) binding sites, the major transcription factors governing hypoxic adaptation. This activation counterbalances the loss of ERα and sustains hormone-independent gene expression. We describe hypoxia in luminal ERα (+) breast cancer as a key factor interfering with endocrine therapies, associated with poor clinical prognosis in breast cancer patients.
雌激素受体α(ERα)是70%乳腺癌中的驱动转录因子,其活性与激素依赖性肿瘤细胞增殖和存活相关。鉴于激素抵抗性复发的情况,了解导致耐药性的病因因素具有重大临床意义。缺氧是实体瘤微环境的常见特征,在体外和体内模型中均已表明,缺氧通过触发ERα下调来促进内分泌抵抗。然而,缺氧对ERα基因组活性的影响在很大程度上仍不清楚。在本研究中,转录组分析表明,缺氧调节一部分ERα靶基因,这表明缺氧信号和雌激素信号之间存在重要的调控重叠。这种基因表达重编程与ERα染色质组的大规模重组相关,其突出表现为ERα结合位点的大量丢失。增强子乙酰化分析显示,在含有缺氧诱导因子(HIFα)结合位点的基因附近,存在激素非依赖性增强子激活,HIFα是控制缺氧适应的主要转录因子。这种激活抵消了ERα的丢失,并维持了激素非依赖性基因表达。我们将管腔型ERα(+)乳腺癌中的缺氧描述为干扰内分泌治疗的关键因素,这与乳腺癌患者的不良临床预后相关。
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