Wolff Matthias, Kosyna Friederike Katharina, Dunst Jürgen, Jelkmann Wolfgang, Depping Reinhard
Institute of Physiology, Center for Structural and Cell Biology in Medicine, University of Lübeck, Germany; Klinik für Strahlentherapie, Universitätsklinikum Schleswig-Holstein, Campus Lübeck, Germany.
Institute of Physiology, Center for Structural and Cell Biology in Medicine, University of Lübeck, Germany.
Arch Biochem Biophys. 2017 Jan 1;613:23-30. doi: 10.1016/j.abb.2016.11.002. Epub 2016 Nov 5.
In women breast cancer is still the most commonly diagnosed cancer. This type of cancer is classified as a hormone-dependent tumor. Estrogen receptor (ER) expression and functional status contribute to breast cancer development and progression. Another important factor associated with cancer is hypoxia which is defined as the state of reduced oxygen availability in tissues. Intratumoral hypoxia results in the activation of the hypoxia inducible factors (HIFs). HIFs are heterodimeric transcription factors involved in the regulation of many cellular processes, such as angiogenesis, anaerobic metabolism, cell proliferation/survival, and promotion of metastasis. In this study we evaluated the interplay between hypoxia, HIF stabilization and the ER-α/β-ratio in several ER-positive breast cancer cell lines. Hypoxia was shown to inhibit ER expression in ER-positive breast cancer cells. Further experiments using the hypoxia mimetic CoCl and HIF-1α knockdown cells indicated that the influence of hypoxia on breast cancer cells involves other pathways than the molecular oxygen sensing pathway. Moreover, we demonstrated that MCF-7 cells in long-term culture lost part of their ability to respond to hypoxic incubation. Understanding the relationships between HIF, ER-α and ER-β expression holds the promise of the development of new therapeutic agents and may provide future advances in prognosis.
在女性中,乳腺癌仍然是最常被诊断出的癌症。这种癌症被归类为激素依赖性肿瘤。雌激素受体(ER)的表达和功能状态有助于乳腺癌的发展和进展。与癌症相关的另一个重要因素是缺氧,它被定义为组织中氧供应减少的状态。肿瘤内缺氧会导致缺氧诱导因子(HIFs)的激活。HIFs是异二聚体转录因子,参与许多细胞过程的调节,如血管生成、无氧代谢、细胞增殖/存活以及促进转移。在本研究中,我们评估了几种雌激素受体阳性乳腺癌细胞系中缺氧、HIF稳定化与ER-α/β比值之间的相互作用。结果表明,缺氧会抑制雌激素受体阳性乳腺癌细胞中ER的表达。使用缺氧模拟物CoCl和HIF-1α敲低细胞进行的进一步实验表明,缺氧对乳腺癌细胞的影响涉及分子氧感应途径以外的其他途径。此外,我们证明长期培养的MCF-7细胞失去了部分对缺氧培养的反应能力。了解HIF、ER-α和ER-β表达之间的关系有望开发新的治疗药物,并可能为未来的预后研究提供进展。