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Cytoplasmic ER alpha and NF kappa B Promote Cell Survival in Mouse Mammary Cancer Cell Lines

机译:细胞质ERα和NFκB促进小鼠乳腺癌细胞系中的细胞存活

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There is a desperate need in the field for mouse mammary tumors and cell lines that faithfully mimic estrogen receptor (ER) expression and activity found in human breast cancers. We found that several mouse mammary cancer cell lines express ER but fail to demonstrate classical estrogen-driven proliferation or transcriptional activity. We investigated whether these cell lines may be used to model tamoxifen resistance by using small molecule inhibitors to signaling pathways known to contribute to resistance. We found that the combination of NF kappa B inhibition and ER antagonists significantly reduced cell proliferation in vitro, as well as growth of syngeneic tumors. Surprisingly, we found that ER was localized to the cytoplasm, regardless of any type of treatment. Based on this, we probed extra-nuclear functions of ER and found that co-inhibition of ER and NF kappa B led to an increase in oxidative stress and apoptosis. Together, these findings suggest that cytoplasmic ER and NF kappa B may play redundant roles in protecting mammary cancer cells from oxidative stress and cell death. Although this study has not identified a mouse model with classical ER activity, cytoplasmic ER has been described in a small subset of human breast tumors, suggesting that these findings may be relevant for some breast cancer patients.
机译:对于忠实地模拟雌激素受体(ER)表达和在人乳腺癌中发现的雌激素受体(ER)表达和活性的小鼠乳腺肿瘤和细胞系具有绝望的需求。我们发现几种小鼠乳腺癌细胞系表达ER但不能证明典型的雌激素驱动的增殖或转录活性。我们研究了这些细胞系可以通过使用小分子抑制剂对已知有助于抗性的信号传导途径来模拟他莫氧基耐药性。我们发现NF Kappa B抑制和ER拮抗剂的组合在体外显着降低了细胞增殖,以及同源肿瘤的生长。令人惊讶的是,无论任何类型的治疗如何,我们发现ER都被定位于细胞质。基于此,我们探讨了ER的核核功能,发现ER和NF Kappa B的共同抑制导致氧化应激和凋亡的增加。这些研究结果表明,细胞质ER和NF Kappa B可能在保护免受氧化应激和细胞死亡中保护乳腺癌细胞的冗余作用。虽然该研究没有鉴定具有经典ER活性的小鼠模型,但已经在一小部分人乳腺肿瘤中描述了细胞质ER,表明这些发现可能与某些乳腺癌患者有关。

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