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MluI细胞周期框(MCB)基序而非损伤反应元件(DRE)负责rhp51+基因在DNA复制应激反应中的转录诱导。

The MluI cell cycle box (MCB) motifs, but not damage-responsive elements (DREs), are responsible for the transcriptional induction of the rhp51+ gene in response to DNA replication stress.

作者信息

Sartagul Wugangerile, Zhou Xin, Yamada Yuki, Ma Ning, Tanaka Katsunori, Furuyashiki Tomoyuki, Ma Yan

机构信息

Division of Pharmacology, Kobe University Graduate School of Medicine, Kobe, Japan.

Department of Oncology, First Affiliated Hospital of Liaoning Medical University, Jinzhou, China; Division of Pharmacology, Kobe University Graduate School of Medicine, Kobe, Japan.

出版信息

PLoS One. 2014 Nov 5;9(11):e111936. doi: 10.1371/journal.pone.0111936. eCollection 2014.

Abstract

DNA replication stress induces the transcriptional activation of rhp51+, a fission yeast recA homolog required for repair of DNA double strand breaks. However, the mechanism by which DNA replication stress activates rhp51+ transcription is not understood. The promoter region of rhp51+ contains two damage-responsive elements (DREs) and two MluI cell cycle box (MCB) motifs. Using luciferase reporter assays, we examined the role of these elements in rhp51+ transcription. The full-length rhp51+ promoter and a promoter fragment containing MCB motifs only, but not a fragment containing DREs, mediated transcriptional activation upon DNA replication stress. Removal of the MCB motifs from the rhp51+ promoter abolished the induction of rhp51+ transcription by DNA replication stress. Consistent with a role for MCB motifs in rhp51+ transcription activation, deletion of the MBF (MCB-binding factor) co-repressors Nrm1 and Yox1 precluded rhp51+ transcriptional induction in response to DNA replication stress. Using cells deficient in checkpoint signaling molecules, we found that the Rad3-Cds1/Chk1 pathway partially mediated rhp51+ transcription in response to DNA replication stress, suggesting the involvement of unidentified checkpoint signaling pathways. Because MBF is critical for G1/S transcription, we examined how the cell cycle affected rhp51+ transcription. The transcription of rhp51+ and cdc18+, an MBF-dependent G1/S gene, peaked simultaneously in synchronized cdc25-22 cells. Furthermore, DNA replication stress maintained transcription of rhp51+ similarly to cdc18+. Collectively, these results suggest that MBF and its regulators mediate rhp51+ transcription in response to DNA replication stress, and underlie rhp51+ transcription at the G1/S transition.

摘要

DNA复制应激诱导了裂殖酵母recA同源物rhp51+的转录激活,该同源物是DNA双链断裂修复所必需的。然而,DNA复制应激激活rhp51+转录的机制尚不清楚。rhp51+的启动子区域包含两个损伤反应元件(DRE)和两个MluI细胞周期框(MCB)基序。我们使用荧光素酶报告基因检测法,研究了这些元件在rhp51+转录中的作用。全长rhp51+启动子以及仅包含MCB基序的启动子片段,而非包含DRE的片段,在DNA复制应激时介导了转录激活。从rhp51+启动子中去除MCB基序消除了DNA复制应激对rhp51+转录的诱导作用。与MCB基序在rhp51+转录激活中的作用一致,MBF(MCB结合因子)共抑制因子Nrm1和Yox1的缺失排除了DNA复制应激时rhp51+的转录诱导。使用缺乏检查点信号分子的细胞,我们发现Rad3-Cds1/Chk1途径部分介导了DNA复制应激时rhp51+的转录,这表明存在未明确的检查点信号途径。因为MBF对G1/S转录至关重要,我们研究了细胞周期如何影响rhp51+转录。在同步化的cdc25-22细胞中,rhp51+和cdc18+(一个MBF依赖的G1/S基因)的转录同时达到峰值。此外,DNA复制应激与cdc18+类似地维持了rhp51+的转录。总体而言,这些结果表明MBF及其调节因子介导了DNA复制应激时rhp51+的转录,并构成了G1/S期转换时rhp51+转录的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee09/4221157/41ab900b0498/pone.0111936.g001.jpg

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