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Gefitinib (Iressa) represses FOXM1 expression via FOXO3a in breast cancer

吉非替尼 福克斯M1 SKBR3型 癌症研究 基因敲除 表皮生长因子受体 小干扰RNA 异位表达 转录因子 乳腺癌 生物 癌症 医学 细胞周期 细胞培养 内科学 转染 基因 遗传学 人体乳房
作者
Ursula McGovern,Richard E. Francis,Barrie Peck,Stephanie K. Guest,Jun Wang,Stephen S. Myatt,Janna Krol,Jimmy M-M. Kwok,Andreas Polychronis,R. Charles Coombes,Eric W.‐F. Lam
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:8 (3): 582-591 被引量:130
标识
DOI:10.1158/1535-7163.mct-08-0805
摘要

Abstract Gefitinib (Iressa) is a specific and effective epidermal growth factor receptor inhibitor. An understanding of the downstream cellular targets of gefitinib will allow the discovery of biomarkers for predicting outcomes and monitoring anti-epidermal growth factor receptor therapies and provide information for overcoming gefitinib resistance. In this study, we investigated the role and regulation of FOXM1 in response to gefitinib treatment in breast cancer. Using the gefitinib-sensitive breast carcinoma cell lines BT474 and SKBR3 as well as the resistant lines MCF-7, MDA-MB-231, and MDA-MB-453, we showed that gefitinib represses the expression of the transcription factor FOXM1 in sensitive, but not resistant, cells. FOXM1 repression by gefitinib is associated with FOXO3a activation and is mediated at the transcriptional level and gene promoter level. These results were verified by immunohistochemical staining of biopsy samples from primary breast cancer patients obtained from a gefitinib neoadjuvant study. We also showed that ectopic expression of an active FOXO3a represses FOXM1 expression, whereas knockdown of FOXO3a expression using small interfering RNA can up-regulate FOXM1 and its downstream targets polo-like kinase, cyclin B1, and CDC25B and rescue sensitive BT474 cells from gefitinib-induced cell proliferative arrest. These results suggest that gefitinib represses FOXM1 expression via FOXO3a in breast cancer. We further showed that overexpression of a wild-type FOXM1 or a constitutively active FOXM1, ΔN-FOXM1, abrogates the cell death induced by gefitinib, indicating that FOXM1 has a functional role in mediating the gefitinib-induced proliferative arrest and in determining sensitivity to gefitinib. In summary, our study defined FOXM1 as a cellular target and marker of gefitinib activity in breast cancer. [Mol Cancer Ther 2009;8(3):582–91]
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