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紫外线损伤后复制产生的缺口是检验点激活的信号。

Postreplication gaps at UV lesions are signals for checkpoint activation.

机构信息

Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 May 4;107(18):8219-24. doi: 10.1073/pnas.1003449107. Epub 2010 Apr 19.

Abstract

Exposure of eukaryotic cells to UV light induces a checkpoint response that delays cell-cycle progression after cells enter S phase. It has been hypothesized that this checkpoint response provides time for repair by signaling the presence of structures generated when the replication fork encounters UV-induced DNA damage. To gain insight into the nature of the signaling structures, we used time-lapse microscopy to determine the effects of deficiencies in translesion DNA polymerases on the checkpoint response of the fission yeast Schizosaccharomyces pombe. We found that disruption of the genes encoding translesion DNA polymerases Polkappa and Poleta significantly prolonged the checkpoint response, indicating that the substrates of these enzymes are signals for checkpoint activation. Surprisingly, we found no evidence that the translesion polymerases Rev1 and Polzeta repair structures that are recognized by the checkpoint despite their role in maintaining viability after UV irradiation. Quantitative flow cytometry revealed that cells lacking translesion polymerases replicate UV-damaged DNA at the same rate at WT cells, indicating that the enhanced checkpoint response of cells lacking Polkappa and Poleta is not the result of stalled replication forks. These observations support a model in which postreplication DNA gaps with unrepaired UV lesions in the template strand act both as substrates for translesion polymerases and as signals for checkpoint activation.

摘要

真核细胞暴露于紫外线下会引发一个检查点反应,该反应会在细胞进入 S 期后延迟细胞周期的进程。人们假设这种检查点反应为修复提供了时间,通过信号传递复制叉遇到紫外线诱导的 DNA 损伤时产生的结构。为了深入了解信号结构的性质,我们使用延时显微镜来确定跨损伤 DNA 聚合酶的缺陷对裂殖酵母 Schizosaccharomyces pombe 的检查点反应的影响。我们发现,编码跨损伤 DNA 聚合酶 Polkappa 和 Poleta 的基因的破坏显著延长了检查点反应,表明这些酶的底物是检查点激活的信号。令人惊讶的是,尽管 Rev1 和 Polzeta 在紫外线照射后维持细胞存活中发挥作用,但我们没有发现它们修复检查点识别的结构的证据。定量流式细胞术显示,缺乏跨损伤聚合酶的细胞以与 WT 细胞相同的速度复制紫外线损伤的 DNA,这表明缺乏 Polkappa 和 Poleta 的细胞增强的检查点反应不是由于复制叉停滞的结果。这些观察结果支持这样一种模型,即模板链上带有未修复的紫外线损伤的复制后 DNA 缺口既是跨损伤聚合酶的底物,也是检查点激活的信号。

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