Department of Molecular Biology and Genetics, Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY, USA.
EMBO J. 2012 Apr 4;31(7):1798-810. doi: 10.1038/emboj.2012.27. Epub 2012 Feb 14.
Reprogramming gene expression is crucial for DNA replication stress response. We used quantitative proteomics to establish how the transcriptional response results in changes in protein levels. We found that expression of G1/S cell-cycle targets are strongly up-regulated upon replication stress, and show that MBF, but not SBF genes, are up-regulated via Rad53-dependent inactivation of the MBF co-repressor Nrm1. A subset of G1/S genes was found to undergo an SBF-to-MBF switch at the G1/S transition, enabling replication stress-induced transcription of genes targeted by SBF during G1. This subset of G1/S genes is characterized by an overlapping Swi4/Mbp1-binding site and is enriched for genes that cause a cell cycle and/or growth defect when overexpressed. Analysis of the prototypical switch gene TOS4 (Target Of SBF 4) reveals its role as a checkpoint effector supporting the importance of this distinct class of G1/S genes for the DNA replication checkpoint response. Our results reveal that replication stress induces expression of G1/S genes via the Rad53-MBF pathway and that an SBF-to-MBF switch characterizes a new class of genes that can be induced by replication stress.
重编程基因表达对于 DNA 复制应激反应至关重要。我们使用定量蛋白质组学来确定转录反应如何导致蛋白质水平的变化。我们发现,细胞周期 G1/S 目标的表达在复制应激时被强烈上调,并表明 MBF,但不是 SBF 基因,通过 Rad53 依赖性失活 MBF 共抑制因子 Nrm1 而上调。在 G1/S 转换时,发现一组 G1/S 基因经历了 SBF 到 MBF 的转换,从而能够在 G1 期间复制应激诱导 SBF 靶向的基因转录。这组 G1/S 基因的特征是重叠的 Swi4/Mbp1 结合位点,并且富含当过度表达时会引起细胞周期和/或生长缺陷的基因。对原型开关基因 TOS4(SBF 的靶标 4)的分析揭示了其作为检查点效应物的作用,支持了这种独特的 G1/S 基因类对于 DNA 复制检查点反应的重要性。我们的结果表明,复制应激通过 Rad53-MBF 途径诱导 G1/S 基因的表达,并且 SBF 到 MBF 的转换表征了一类可被复制应激诱导的新基因。