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通过化学调节雌激素受体中易损锌指来抑制乳腺癌

Suppression of breast cancer by chemical modulation of vulnerable zinc fingers in estrogen receptor.

作者信息

Wang Li Hua, Yang Xiao Yi, Zhang Xiaohu, Mihalic Kelly, Fan Ying-Xin, Xiao Weihua, Howard O M Zack, Appella Ettore, Maynard Andrew T, Farrar William L

机构信息

Basic Research Program, SAIC-Frederick, National Cancer Institute-Frederick, National Institutes of Health, PO Box B, Frederick, Maryland 21702, USA.

出版信息

Nat Med. 2004 Jan;10(1):40-7. doi: 10.1038/nm969. Epub 2003 Dec 14.

Abstract

Current antiestrogen therapy for breast cancer is limited by the mixed estrogenic and antiestrogenic activity of selective estrogen receptor modulators. Here we show that the function of zinc fingers in the estrogen receptor DNA-binding domain (DBD) is susceptible to chemical inhibition by electrophilic disulfide benzamide and benzisothiazolone derivatives, which selectively block binding of the estrogen receptor to its responsive element and subsequent transcription. These compounds also significantly inhibit estrogen-stimulated cell proliferation, markedly reduce tumor mass in nude mice bearing human MCF-7 breast cancer xenografts, and interfere with cell-cycle and apoptosis regulatory gene expression. Functional assays and computational analysis support a molecular mechanism whereby electrophilic agents preferentially disrupt the vulnerable C-terminal zinc finger, thus suppressing estrogen receptor-mediated breast carcinoma progression. Our results provide the proof of principle for a new strategy to inhibit breast cancer at the level of DNA binding, rather than the classical antagonism of estrogen binding.

摘要

目前用于乳腺癌的抗雌激素疗法受到选择性雌激素受体调节剂的混合雌激素活性和抗雌激素活性的限制。在此我们表明,雌激素受体DNA结合域(DBD)中锌指的功能易受亲电二硫代苯甲酰胺和苯并异噻唑酮衍生物的化学抑制,这些衍生物选择性地阻断雌激素受体与其反应元件的结合以及随后的转录。这些化合物还显著抑制雌激素刺激的细胞增殖,明显减小携带人MCF-7乳腺癌异种移植瘤的裸鼠的肿瘤体积,并干扰细胞周期和凋亡调节基因的表达。功能测定和计算分析支持一种分子机制,即亲电试剂优先破坏脆弱的C端锌指,从而抑制雌激素受体介导的乳腺癌进展。我们的结果为在DNA结合水平而非经典的雌激素结合拮抗作用来抑制乳腺癌的新策略提供了原理证明。

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