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人类 INO80 染色质重塑复合物通过表达 Rad54B 和 XRCC3 基因促进 DNA 双链断裂修复。

Human INO80 chromatin-remodelling complex contributes to DNA double-strand break repair via the expression of Rad54B and XRCC3 genes.

机构信息

Department of Life Science, College of Natural Sciences, Ewha Womans University, Seoul, South Korea.

出版信息

Biochem J. 2010 Oct 15;431(2):179-87. doi: 10.1042/BJ20100988.

Abstract

Recent studies have shown that the SWI/SNF family of ATP-dependent chromatin-remodelling complexes play important roles in DNA repair as well as in transcription. The INO80 complex, the most recently described member of this family, has been shown in yeast to play direct role in DNA DSB (double-strand break) repair without affecting the expression of the genes involved in this process. However, whether this function of the INO80 complex is conserved in higher eukaryotes has not been investigated. In the present study, we found that knockdown of hINO80 (human INO80) confers DNA-damage hypersensitivity and inefficient DSB repair. Microarray analysis and other experiments have identified the Rad54B and XRCC3 (X-ray repair complementing defective repair in Chinese-hamster cells 3) genes, implicated in DSB repair, to be repressed by hINO80 deficiency. Chromatin immunoprecipitation studies have shown that hINO80 binds to the promoters of the Rad54B and XRCC3 genes. Re-expression of the Rad54B and XRCC3 genes rescues the DSB repair defect in hINO80-deficient cells. These results suggest that hINO80 assists DSB repair by positively regulating the expression of the Rad54B and XRCC3 genes. Therefore, unlike yeast INO80, hINO80 can contribute to DSB repair indirectly via gene expression, suggesting that the mechanistic role of this chromatin remodeller in DSB repair is evolutionarily diversified.

摘要

最近的研究表明,SWI/SNF 家族的 ATP 依赖性染色质重塑复合物在 DNA 修复以及转录中发挥着重要作用。INO80 复合物是该家族中最近描述的成员,在酵母中已被证明在不影响涉及该过程的基因表达的情况下直接参与 DNA DSB(双链断裂)修复。然而,INO80 复合物的这种功能是否在高等真核生物中保守尚未被研究。在本研究中,我们发现 hINO80(人 INO80)的敲低导致 DNA 损伤敏感性和 DSB 修复效率降低。微阵列分析和其他实验已鉴定出 Rad54B 和 XRCC3(中国仓鼠细胞中 X 射线修复缺陷互补 3)基因,这些基因参与 DSB 修复,被 hINO80 缺乏所抑制。染色质免疫沉淀研究表明,hINO80 结合到 Rad54B 和 XRCC3 基因的启动子上。Rad54B 和 XRCC3 基因的重新表达挽救了 hINO80 缺陷细胞中的 DSB 修复缺陷。这些结果表明,hINO80 通过正向调节 Rad54B 和 XRCC3 基因的表达来辅助 DSB 修复。因此,与酵母 INO80 不同,hINO80 可以通过基因表达间接促进 DSB 修复,这表明该染色质重塑酶在 DSB 修复中的机制作用在进化上是多样化的。

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