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缺氧诱导E2Fs下调BRCA1表达。

Hypoxia-induced down-regulation of BRCA1 expression by E2Fs.

作者信息

Bindra Ranjit S, Gibson Shannon L, Meng Alice, Westermark Ulrica, Jasin Maria, Pierce Andrew J, Bristow Robert G, Classon Marie K, Glazer Peter M

机构信息

Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, CT 06520, USA.

出版信息

Cancer Res. 2005 Dec 15;65(24):11597-604. doi: 10.1158/0008-5472.CAN-05-2119.

Abstract

Decreased BRCA1 expression in the absence of genetic mutation is observed frequently in sporadic cancers of the breast and other sites, although little is known regarding the mechanisms by which the expression of this gene can be repressed. Here, we show that activating and repressive E2Fs simultaneously bind the BRCA1 promoter at two adjacent E2F sites in vivo, and that hypoxia induces a dynamic redistribution of promoter occupancy by these factors resulting in the transcriptional repression of BRCA1 expression. Functionally, we show that hypoxia is associated with impaired homologous recombination, whereas the nonhomologous end-joining (NHEJ) repair pathway is unaffected under these conditions. Repression of BRCA1 expression by hypoxia represents an intriguing mechanism of functional BRCA1 inactivation in the absence of genetic mutation. We propose that hypoxia-induced decreases in BRCA1 expression and consequent suppression of homologous recombination may lead to genetic instability by shifting the balance between the high-fidelity homologous recombination pathway and the error-prone NHEJ pathway of DNA repair. Furthermore, these findings provide a novel link between E2Fs and the transcriptional response to hypoxia and provide insight into the mechanisms by which the tumor microenvironment can contribute to genetic instability in cancer.

摘要

在散发性乳腺癌和其他部位的癌症中,经常观察到在无基因突变情况下BRCA1表达降低,尽管对于该基因表达可被抑制的机制知之甚少。在此,我们表明激活型和抑制型E2F在体内同时结合BRCA1启动子上两个相邻的E2F位点,并且缺氧诱导这些因子对启动子占据情况发生动态重新分布,导致BRCA1表达的转录抑制。在功能上,我们表明缺氧与同源重组受损相关,而非同源末端连接(NHEJ)修复途径在这些条件下不受影响。缺氧对BRCA1表达的抑制代表了在无基因突变情况下功能性BRCA1失活的一种有趣机制。我们提出,缺氧诱导的BRCA1表达降低以及随之而来的同源重组抑制可能通过改变DNA修复的高保真同源重组途径和易出错的NHEJ途径之间的平衡而导致基因不稳定。此外,这些发现提供了E2F与缺氧转录反应之间的新联系,并深入了解了肿瘤微环境促成癌症中基因不稳定的机制。

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