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PKB/Akt 通过电离辐射后上调 Mre11 的表达促进癌细胞中 DSB 的修复。

PKB/Akt promotes DSB repair in cancer cells through upregulating Mre11 expression following ionizing radiation.

机构信息

State Key Laboratory of Oncology in South China, Cancer Center, Sun Yat-sen University, Guangzhou, China.

出版信息

Oncogene. 2011 Feb 24;30(8):944-55. doi: 10.1038/onc.2010.467. Epub 2010 Oct 18.

Abstract

An elevated DNA-repair capacity in cancer cells leads to radiation resistance and severely limits the efficacy of radiation therapy. Activation of Akt is tightly associated with resistance to radiotherapy, and Mre11 protein has important role during the repair of DNA double-strand breaks (DSBs). In this report, our results showed that inhibition of Akt activity impaired the repair of DSBs in CNE2 cells, whereas activated Akt promoted the repair of DSBs in HeLa cells. Knockdown of Mre11 also impaired the process of DSB repair in both these two cell lines. More importantly, we found that Akt could regulate Mre11 expression. Inhibition of Akt activity by small interfering RNA or LY294002 efficiently downregulated the Mre11 expression in CNE2 cells, and transfection with myr-Akt plasmid in HeLa cells upregulated the Mre11 expression. In addition, luciferase reporter analysis revealed that Mre11 reporter activity increased after transfection with myr-Akt1 plasmids, and this myr-Akt1-induced transcriptional activity was blocked in the presence of LY294002. Further study showed GSK3β/β-catenin/LEF-1 pathway was involved in this regulation. Knockdown of β-catenin or LEF-1 led to the downregulation of Mre11, whereas overexpression of β-catenin led to upregulation of Mre11. The chromatin immunoprecipitation assay assay showed β-catenin/LEF-1 heterodimer could directly bind to the promoter of Mre11 in vivo. And the luciferase activity of the pGL3-Mre11 and pGL3-Lef increased in HeLa cells following β-catenin plasmid co-transfected, but was abolished when the LEF-1-binding conserved sequences of Mre11 promoter were mutated. These results together support Akt can upregulate the expression of Mre11 through GSK3β/ β-catenin/LEF pathway to elevate DSB-repair capacity in cancer cells.

摘要

癌细胞中 DNA 修复能力的提高导致辐射抗性,并严重限制了放射治疗的疗效。Akt 的激活与放射治疗抵抗紧密相关,而 Mre11 蛋白在 DNA 双链断裂 (DSB) 的修复中具有重要作用。在本报告中,我们的结果表明,抑制 Akt 活性可损害 CNE2 细胞中 DSB 的修复,而激活的 Akt 则可促进 HeLa 细胞中 DSB 的修复。Mre11 的敲低也会损害这两种细胞系中 DSB 修复过程。更重要的是,我们发现 Akt 可以调节 Mre11 的表达。通过小干扰 RNA 或 LY294002 抑制 Akt 活性可有效地下调 CNE2 细胞中的 Mre11 表达,而在 HeLa 细胞中转染 myr-Akt 质粒可上调 Mre11 表达。此外,荧光素酶报告基因分析显示,转染 myr-Akt1 质粒后,Mre11 报告基因活性增加,而 LY294002 的存在则阻断了这种 myr-Akt1 诱导的转录活性。进一步的研究表明,GSK3β/β-catenin/LEF-1 通路参与了这种调节。β-catenin 或 LEF-1 的敲低导致 Mre11 的下调,而过表达β-catenin 导致 Mre11 的上调。染色质免疫沉淀试验显示,β-catenin/LEF-1 异二聚体可在体内直接结合 Mre11 启动子。当 Mre11 启动子的 LEF-1 结合保守序列发生突变时,HeLa 细胞中 pGL3-Mre11 和 pGL3-Lef 的荧光素酶活性增加,但当 Mre11 启动子的 LEF-1 结合保守序列发生突变时,荧光素酶活性被消除。这些结果共同表明,Akt 可以通过 GSK3β/β-catenin/LEF 通路上调 Mre11 的表达,从而提高癌细胞中 DSB 的修复能力。

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