首页> 外文期刊>Journal of cellular biochemistry. >NF-kappaB and estrogen receptor alpha interactions: Differential function in estrogen receptor-negative and -positive hormone-independent breast cancer cells.
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NF-kappaB and estrogen receptor alpha interactions: Differential function in estrogen receptor-negative and -positive hormone-independent breast cancer cells.

机译:NF-κB和雌激素受体α相互作用:雌激素受体阴性和阳性激素非依赖性乳腺癌细胞中的差异功能。

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摘要

Estrogen receptor (ER)-positive breast cancer cells have low levels of constitutive NF-kappaB activity while ER negative (-) cells and hormone-independent cells have relatively high constitutive levels of NF-kappaB activity. In this study, we have examined the aspects of mutual repression between the ERalpha and NF-kappaB proteins in ER+ and ER- hormone-independent cells. Ectopic expression of the ERalpha reduced cell numbers in ER+ and ER- breast cancer cell lines while NF-kappaB-binding activity and the expression of several NF-kappaB-regulated proteins were reduced in ER- cells. ER overexpression in ER+/E2-independent LCC1 cells only weakly inhibited the predominant p50 NF-kappaB. GST-ERalpha fusion protein pull downs and in vivo co-immunoprecipitations of NF-kappaB:ERalpha complexes showed that the ERalpha interacts with p50 and p65 in vitro and in vivo. Inhibition of NF-kappaB increased the expression of diverse E2-regulated proteins. p50 differentially associated directly with the ER:ERE complex in LCC1 and MCF-7 cells by supershift analysis while p65 antibody reduced ERalpha:ERE complexes in the absence of a supershift. ChIP analysis demonstrated that NF-kappaB proteins are present on an endogenous ERE. Together these results demonstrate that the ER and NF-kappaB undergo mutual repression, which may explain, in part, why expression of the ERalpha in ER- cells does not confer growth signaling. Secondly, the acquisition of E2-independence in ER+ cells is associated with predominantly p50:p50 NF-kappaB, which may reflect alterations in the ER in these cells. Since the p50 homodimer is less sensitive to the presence of the ER, this may allow for the activation of both pathways in the same cell.
机译:雌激素受体(ER)阳性的乳腺癌细胞具有低水平的本构NF-kappaB活性,而ER阴性(-)细胞和激素非依赖性细胞具有相对较高的NF-kappaB组成型水平。在这项研究中,我们检查了ER +和非ER激素非依赖性细胞中ERalpha和NF-kappaB蛋白之间相互抑制的方面。 ERalpha的异位表达减少了ER +和ER-乳腺癌细胞系中的细胞数量,而NF-κB结合活性和几种NF-κB调节蛋白的表达在ER-细胞中减少了。 ER + / E2依赖性LCC1细胞中的ER过表达仅弱抑制主要的p50 NF-kappaB。 GST-ERalpha融合蛋白的表达下降,NF-κB:ERalpha复合物的体内共免疫沉淀表明ERalpha在体外和体内与p50和p65相互作用。抑制NF-κB增加了多种E2调控蛋白的表达。通过超位移分析,p50与LCC1和MCF-7细胞中的ER:ERE复合物直接相关,而p65抗体在不存在超位移的情况下还原ERalpha:ERE复合物。 ChIP分析表明,内源性ERE中存在NF-κB蛋白。这些结果共同表明,ER和NF-κB相互抑制,这可以部分解释为什么ERalpha在ER细胞中的表达不赋予生长信号。其次,在ER +细胞中获得E2独立性主要与p50:p50NF-κB有关,这可能反映了这些细胞中ER的改变。由于p50同型二聚体对ER的敏感性较低,因此可以激活同一细胞中的两个途径。

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