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复制和转录之间的干扰是否会导致癌细胞的基因组不稳定?

Does interference between replication and transcription contribute to genomic instability in cancer cells?

机构信息

Institute of Human Genetics CNRS UPR1142, Montpellier, France.

出版信息

Cell Cycle. 2010 May 15;9(10):1886-92. doi: 10.4161/cc.9.10.11539.

Abstract

We have recently reported that topoisomerase 1 (Top1) cooperates with ASF/SF2, a splicing factor of the SR family, to prevent unscheduled replication fork arrest and genomic instability in human cells. Our results suggest that Top1 execute this function by suppressing the formation of DNA-RNA hybrids during transcription, these so-called R-loops interfering with the progression of replication forks. Using ChIP-chip, we have shown that γ-H2AX, a marker of DNA damage, accumulates at gene-rich regions of the genome in Top1-deficient cells. This is best illustrated at histone genes, which are highly expressed during S phase and display discrete γ-H2AX peaks on ChIP-chip profiles. Here, we show that these γ-H2AX domains are different from those induced by camptothecin, a Top1 inhibitor inducing double-strand DNA breaks throughout the genome. These data support the view that R-loops promote genomic instability at specific sites by blocking fork progression and inducing chromosome breaks. Whether this type of transcription-dependent fork arrest contributes to the replication stress observed in precancerous lesions is an important question that deserves further attention.

摘要

我们最近报道称,拓扑异构酶 1(Top1)与 ASF/SF2 合作,ASF/SF2 是 SR 家族的剪接因子,以防止人类细胞中未计划的复制叉停滞和基因组不稳定性。我们的结果表明,Top1 通过在转录过程中抑制 DNA-RNA 杂交的形成来执行此功能,这些所谓的 R 环干扰复制叉的进展。使用 ChIP-chip,我们已经表明,γ-H2AX,一种 DNA 损伤的标志物,在 Top1 缺陷细胞的基因组中富含基因的区域积累。这在组蛋白基因中表现得最好,这些基因在 S 期高度表达,并且在 ChIP-chip 图谱上显示出离散的 γ-H2AX 峰。在这里,我们表明这些 γ-H2AX 结构域与喜树碱诱导的那些不同,喜树碱是一种诱导整个基因组双链 DNA 断裂的 Top1 抑制剂。这些数据支持 R 环通过阻断叉进展和诱导染色体断裂在特定位点促进基因组不稳定性的观点。这种转录依赖性的叉停滞是否会导致癌前病变中观察到的复制应激,这是一个值得进一步关注的重要问题。

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