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抑癌因子 C/EBPδ 抑制 FBXW7 的表达并促进乳腺肿瘤转移。

The tumour suppressor C/EBPδ inhibits FBXW7 expression and promotes mammary tumour metastasis.

机构信息

Laboratory of Cell and Developmental Signalling, CCR, National Cancer Institute, Frederick, MD 21702, USA.

出版信息

EMBO J. 2010 Dec 15;29(24):4106-17. doi: 10.1038/emboj.2010.280. Epub 2010 Nov 12.

Abstract

Inflammation and hypoxia are known to promote the metastatic progression of tumours. The CCAAT/enhancer-binding protein-δ (C/EBPδ, CEBPD) is an inflammatory response gene and candidate tumour suppressor, but its physiological role in tumourigenesis in vivo is unknown. Here, we demonstrate a tumour suppressor function of C/EBPδ using transgenic mice overexpressing the Neu/Her2/ERBB2 proto-oncogene in the mammary gland. Unexpectedly, this study also revealed that C/EBPδ is necessary for efficient tumour metastasis. We show that C/EBPδ is induced by hypoxia in tumours in vivo and in breast tumour cells in vitro, and that C/EBPδ-deficient cells exhibit reduced glycolytic metabolism and cell viability under hypoxia. C/EBPδ supports CXCR4 expression. On the other hand, C/EBPδ directly inhibits expression of the tumour suppressor F-box and WD repeat-domain containing 7 gene (FBXW7, FBW7, AGO, Cdc4), encoding an F-box protein that promotes degradation of the mammalian target of rapamycin (mTOR). Consequently, C/EBPδ enhances mTOR/AKT/S6K1 signalling and augments translation and activity of hypoxia-inducible factor-1α (HIF-1α), which is necessary for hypoxia adaptation. This work provides new insight into the mechanisms by which metastasis-promoting signals are induced specifically under hypoxia.

摘要

炎症和缺氧已知可促进肿瘤的转移进展。CCAAT/增强子结合蛋白-δ(C/EBPδ,CEBPD)是一种炎症反应基因和候选肿瘤抑制因子,但它在体内肿瘤发生中的生理作用尚不清楚。在这里,我们使用过表达 Neu/Her2/ERBB2 原癌基因的乳腺转基因小鼠证明了 C/EBPδ 的肿瘤抑制功能。出乎意料的是,这项研究还揭示了 C/EBPδ 是肿瘤转移的有效必需条件。我们表明,C/EBPδ 在体内肿瘤中和体外乳腺肿瘤细胞中由缺氧诱导,并且 C/EBPδ 缺陷细胞在缺氧下表现出降低的糖酵解代谢和细胞活力。C/EBPδ 支持 CXCR4 的表达。另一方面,C/EBPδ 直接抑制肿瘤抑制因子 F-box 和 WD 重复结构域包含 7 基因(FBXW7、FBW7、AGO、Cdc4)的表达,该基因编码一种促进哺乳动物雷帕霉素靶蛋白(mTOR)降解的 F-box 蛋白。因此,C/EBPδ 增强了 mTOR/AKT/S6K1 信号传导,并增强了缺氧诱导因子-1α(HIF-1α)的翻译和活性,这对于缺氧适应是必需的。这项工作为特定于缺氧诱导的促进转移信号的机制提供了新的见解。

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