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E2F7 依赖性转录程序调节 DNA 损伤修复和基因组稳定性。

An E2F7-dependent transcriptional program modulates DNA damage repair and genomic stability.

机构信息

Department of Genetics, Physical Anthropology and Animal Physiology, University of the Basque Country UPV/EHU, 48080 Bilbao, Spain.

Department of Cell Biology and Histology, University of the Basque Country UPV/EHU, 48080 Bilbao, Spain.

出版信息

Nucleic Acids Res. 2018 May 18;46(9):4546-4559. doi: 10.1093/nar/gky218.

Abstract

The cellular response to DNA damage is essential for maintaining the integrity of the genome. Recent evidence has identified E2F7 as a key player in DNA damage-dependent transcriptional regulation of cell-cycle genes. However, the contribution of E2F7 to cellular responses upon genotoxic damage is still poorly defined. Here we show that E2F7 represses the expression of genes involved in the maintenance of genomic stability, both throughout the cell cycle and upon induction of DNA lesions that interfere with replication fork progression. Knockdown of E2F7 leads to a reduction in 53BP1 and FANCD2 foci and to fewer chromosomal aberrations following treatment with agents that cause interstrand crosslink (ICL) lesions but not upon ionizing radiation. Accordingly, E2F7-depleted cells exhibit enhanced cell-cycle re-entry and clonogenic survival after exposure to ICL-inducing agents. We further report that expression and functional activity of E2F7 are p53-independent in this context. Using a cell-based assay, we show that E2F7 restricts homologous recombination through the transcriptional repression of RAD51. Finally, we present evidence that downregulation of E2F7 confers an increased resistance to chemotherapy in recombination-deficient cells. Taken together, our results reveal an E2F7-dependent transcriptional program that contributes to the regulation of DNA repair and genomic integrity.

摘要

细胞对 DNA 损伤的反应对于维持基因组的完整性至关重要。最近的证据表明,E2F7 是 DNA 损伤依赖性细胞周期基因转录调控中的关键因子。然而,E2F7 在遗传毒性损伤后对细胞反应的贡献仍未得到充分定义。在这里,我们表明 E2F7 抑制了参与基因组稳定性维持的基因的表达,无论是在整个细胞周期内还是在干扰复制叉进展的 DNA 损伤诱导时。E2F7 的敲低导致 53BP1 和 FANCD2 焦点减少,并且在用导致链间交联 (ICL) 损伤的试剂处理后染色体畸变减少,但在用电离辐射处理时则不会。因此,E2F7 耗尽的细胞在暴露于 ICL 诱导剂后表现出增强的细胞周期再进入和集落形成存活能力。我们进一步报告,在这种情况下,E2F7 的表达和功能活性与 p53 无关。使用基于细胞的测定法,我们表明 E2F7 通过 RAD51 的转录抑制来限制同源重组。最后,我们提供的证据表明,E2F7 的下调赋予了重组缺陷细胞对化疗的更高抗性。总之,我们的结果揭示了一个 E2F7 依赖性转录程序,它有助于 DNA 修复和基因组完整性的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8706/5961008/0bc91ceaaeeb/gky218fig1.jpg

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