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一个蛋白质组学的可视化筛选方法可识别定位到 DNA 双链断裂的裂殖酵母蛋白。

A proteome-wide visual screen identifies fission yeast proteins localizing to DNA double-strand breaks.

机构信息

College of Biological Sciences, China Agricultural University, Beijing 100193, China.

出版信息

DNA Repair (Amst). 2013 Jun 1;12(6):433-43. doi: 10.1016/j.dnarep.2013.04.001. Epub 2013 Apr 28.

Abstract

DNA double-strand breaks (DSBs) are a major threat to genome integrity. Proteins involved in DNA damage checkpoint signaling and DSB repair often relocalize and concentrate at DSBs. Here, we used an ORFeome library of the fission yeast Schizosaccharomyces pombe to systematically identify proteins targeted to DSBs. We found 51 proteins that, when expressed from a strong exogenous promoter on the ORFeome plasmids, were able to form a distinct nuclear focus at an HO endonuclease-induced DSB. The majority of these proteins have known connections to DNA damage response, but few have been visualized at a specific DSB before. Among the screen hits, 37 can be detected at DSBs when expressed from native promoters. We classified them according to the focus emergence timing of the endogenously tagged proteins. Eight of these 37 proteins are yet unnamed. We named these eight proteins DNA-break-localizing proteins (Dbls) and performed preliminary functional analysis on two of them, Dbl1 (SPCC2H8.05c) and Dbl2 (SPCC553.01c). We found that Dbl1 and Dbl2 contribute to the normal DSB targeting of checkpoint protein Rad26 (homolog of human ATRIP) and DNA repair helicase Fml1 (homolog of human FANCM), respectively. As the first proteome-wide inventory of DSB-localizing proteins, our screen result will be a useful resource for understanding the mechanisms of eukaryotic DSB response.

摘要

DNA 双链断裂 (DSBs) 是基因组完整性的主要威胁。参与 DNA 损伤检查点信号转导和 DSB 修复的蛋白质通常会重新定位并集中在 DSB 处。在这里,我们使用裂殖酵母 Schizosaccharomyces pombe 的 ORFeome 文库系统地鉴定了靶向 DSB 的蛋白质。我们发现了 51 种蛋白质,当它们从 ORFeome 质粒上的强外源性启动子表达时,能够在 HO 内切酶诱导的 DSB 处形成一个明显的核焦点。这些蛋白质中的大多数与 DNA 损伤反应有关,但以前很少在特定的 DSB 处被可视化。在筛选结果中,有 37 种在表达内源标记蛋白时可以在 DSB 处检测到。我们根据内源性标记蛋白焦点出现的时间对它们进行了分类。这 37 种蛋白质中有 8 种尚未命名。我们将这 8 种蛋白质命名为 DNA 断裂定位蛋白 (Dbls),并对其中的两种进行了初步的功能分析,Dbl1(SPCC2H8.05c)和 Dbl2(SPCC553.01c)。我们发现 Dbl1 和 Dbl2 分别有助于检查点蛋白 Rad26(人 ATRIP 的同源物)和 DNA 修复解旋酶 Fml1(人 FANCM 的同源物)的正常 DSB 靶向。作为第一个全蛋白质组 DSB 定位蛋白的清单,我们的筛选结果将是理解真核 DSB 反应机制的有用资源。

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