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Akt2 抑制使叉头转录因子 FoxO3a 在乳腺癌细胞中对雌激素受体 alpha 的转录活性具有抑制作用。

Akt2 inhibition enables the forkhead transcription factor FoxO3a to have a repressive role in estrogen receptor alpha transcriptional activity in breast cancer cells.

机构信息

Department of Pharmaco-Biology, University of Calabria, 87036 Arcavacata di Rende, Italy.

出版信息

Mol Cell Biol. 2010 Feb;30(3):857-70. doi: 10.1128/MCB.00824-09. Epub 2009 Nov 23.

Abstract

Estrogen receptor alpha (ER) and the insulin-like growth factor I receptor (IGF-IR) pathways are engaged in a functional cross talk in breast cancer, promoting tumor progression and increased resistance to anticancer treatments and radiotherapy. Here, we introduce new mechanisms through which proteins of the IGF-I/IGF-IR signaling pathway may regulate ER function in the absence of ligand. Our results indicate that in ER-positive breast cancer cells, Akt2 modulates ER transcriptional activity at multiple levels, including (i) the regulation of ER expression and its nuclear retention and (ii) the activation of one of its downstream targets, the Forkhead transcription factor FoxO3a. FoxO3a colocalizes and coprecipitates with ER in the nucleus, where it binds to Forkhead-responsive sequences on the ER target pS2/TFF-1 promoter; in addition, FoxO3a silencing leads to an increase of ER transcriptional activity, suggesting a repressive role of the Forkhead transcription factor in ER function. Moreover, 17beta-estradiol upregulates FoxO3a levels, which could represent the basis for an ER-mediated homeostatic mechanism. These findings provide further evidence of the importance of mediators of the growth factor signaling in ER regulation, introducing the Akt2/FoxO3a axis as a pursuable target in therapy for ER-positive breast cancer.

摘要

雌激素受体 alpha(ER)和胰岛素样生长因子 I 受体(IGF-IR)途径在乳腺癌中存在功能交叉对话,促进肿瘤进展,并增加对抗癌治疗和放疗的耐药性。在这里,我们介绍了新的机制,通过这些机制,IGF-I/IGF-IR 信号通路的蛋白可以在没有配体的情况下调节 ER 的功能。我们的结果表明,在 ER 阳性乳腺癌细胞中,Akt2 在多个水平上调节 ER 的转录活性,包括(i)调节 ER 的表达及其核保留,和(ii)激活其下游靶标之一,叉头转录因子 FoxO3a。FoxO3a 在核内与 ER 共定位和共沉淀,在那里它与 ER 靶标 pS2/TFF-1 启动子上的 Forkhead 反应序列结合;此外,FoxO3a 的沉默导致 ER 转录活性增加,表明 Forkhead 转录因子在 ER 功能中起抑制作用。此外,17β-雌二醇上调 FoxO3a 水平,这可能是 ER 介导的动态平衡机制的基础。这些发现进一步证明了生长因子信号转导介质在 ER 调节中的重要性,引入了 Akt2/FoxO3a 轴作为 ER 阳性乳腺癌治疗的可行靶点。

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