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缺氧条件下 HIF-1 参与乳腺癌细胞系中 AURKA 表达的负调控。

HIF-1 is involved in the negative regulation of AURKA expression in breast cancer cell lines under hypoxic conditions.

机构信息

Section of Medical Oncology, Department of Surgical, Oncological and Stomatological Sciences, University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.

出版信息

Breast Cancer Res Treat. 2013 Aug;140(3):505-17. doi: 10.1007/s10549-013-2649-0. Epub 2013 Aug 8.

Abstract

Numerous microarray-based gene expression studies performed on several types of solid tumors revealed significant changes in key genes involved in progression and regulation of the cell cycle, including AURKA that is known to be overexpressed in many types of human malignancies. Tumor hypoxia is associated with poor prognosis in several cancer types, including breast cancer (BC). Since hypoxia is a condition that influences the expression of many genes involved in tumorigenesis, proliferation, and cell cycle regulation, we performed a microarray-based gene expression analysis in order to identify differentially expressed genes in BC cell lines exposed to hypoxia. This analysis showed that hypoxia induces a down-regulation of AURKA expression. Although hypoxia is a tumor feature, the molecular mechanisms that regulate AURKA expression in response to hypoxia in BC are still unknown. For the first time, we demonstrated that HIF-1 activation downstream of hypoxia could drive AURKA down-regulation in BC cells. In fact, we found that siRNA-mediated knockdown of HIF-1α significantly reduces the AURKA down-regulation in BC cells under hypoxia. The aim of our study was to obtain new insights into AURKA transcriptional regulation in hypoxic conditions. Luciferase reporter assays showed a reduction of AURKA promoter activity in hypoxia. Unlike the previous findings, we hypothesize a new possible mechanism where HIF-1, rather than inducing transcriptional activation, could promote the AURKA down-regulation via its binding to hypoxia-responsive elements into the proximal region of the AURKA promoter. The present study shows that hypoxia directly links HIF-1 with AURKA expression, suggesting a possible pathophysiological role of this new pathway in BC and confirming HIF-1 as an important player linking an environmental signal to the AURKA promoter. Since AURKA down-regulation overrides the estrogen-mediated growth and chemoresistance in BC cells, these findings could be important for the development of new possible therapies against BC.

摘要

许多基于微阵列的基因表达研究在几种实体肿瘤上进行,揭示了细胞周期进展和调节中关键基因的显著变化,包括 AURKA,它在许多人类恶性肿瘤中被证实过度表达。肿瘤缺氧与多种癌症类型的不良预后相关,包括乳腺癌(BC)。由于缺氧是影响参与肿瘤发生、增殖和细胞周期调节的许多基因表达的条件,我们进行了基于微阵列的基因表达分析,以鉴定暴露于缺氧的 BC 细胞系中差异表达的基因。该分析表明,缺氧诱导 AURKA 表达下调。尽管缺氧是肿瘤的特征,但调节 BC 中缺氧诱导的 AURKA 表达的分子机制仍不清楚。我们首次证明,缺氧下游的 HIF-1 激活可以驱动 BC 细胞中 AURKA 的下调。事实上,我们发现,siRNA 介导的 HIF-1α 敲低可显著减少 BC 细胞在缺氧下的 AURKA 下调。我们研究的目的是深入了解 AURKA 在缺氧条件下的转录调节。荧光素酶报告基因检测显示,AURKA 启动子活性在缺氧条件下降低。与之前的发现不同,我们假设了一种新的可能机制,即 HIF-1 不是通过诱导转录激活,而是通过其与 AURKA 启动子近端区域的缺氧反应元件结合,促进 AURKA 的下调。本研究表明,缺氧直接将 HIF-1 与 AURKA 表达联系起来,提示该新途径在 BC 中的可能病理生理作用,并证实 HIF-1 是将环境信号与 AURKA 启动子联系起来的重要因素。由于 AURKA 下调会使 BC 细胞中的雌激素介导的生长和化疗耐药性被逆转,这些发现可能对开发针对 BC 的新的可能疗法具有重要意义。

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