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基因组完整性检查点的预先激活可增加 DNA 损伤容忍度。

Pre-activation of the genome integrity checkpoint increases DNA damage tolerance.

机构信息

Department of Medical Biochemistry and Biophysics, Umeå University, SE 90187, Umeå, Sweden and Laboratory for Molecular Infection Medicine Sweden (MIMS), Umeå University, SE 90187 Umeå, Sweden.

出版信息

Nucleic Acids Res. 2013 Dec;41(22):10371-8. doi: 10.1093/nar/gkt820. Epub 2013 Sep 17.

Abstract

The genome integrity checkpoint is a conserved signaling pathway that is regulated in yeast by the Mec1 (homologous to human ATR) and Rad53 (homologous to human Chk1) kinases. The pathway coordinates a multifaceted response that allows cells to cope with DNA damage and DNA replication stress. The full activation of the checkpoint blocks origin firing, stabilizes replication forks, activates DNA repair proteins and may lead to senescence or apoptosisin higher eukaryotes. We have recently demonstrated that endogenous replication stress can activate the genome integrity checkpoint in budding yeast at a low level that does not go so far as to interfere with cell cycle progression, but it does activate DNA damage-inducible proteins. Here we demonstrate that the low level pre-activation of the checkpoint, either by endogenous replication stress or by the nucleotide-depleting drug hydroxyurea, can increase damage tolerance to multiple DNA-damaging agents. These results may provide new strategies for using the checkpoint to protect normal cells from genotoxic stress.

摘要

基因组完整性检查点是一种保守的信号通路,在酵母中由 Mec1(与人类 ATR 同源)和 Rad53(与人类 Chk1 同源)激酶调节。该通路协调了一种多方面的反应,使细胞能够应对 DNA 损伤和 DNA 复制压力。检查点的完全激活会阻止起始复制,稳定复制叉,激活 DNA 修复蛋白,并且在高等真核生物中可能导致衰老或凋亡。我们最近证明,内源性复制压力可以在芽殖酵母中低水平地激活基因组完整性检查点,这种激活不会干扰细胞周期进程,但它确实会激活 DNA 损伤诱导蛋白。在这里,我们证明检查点的低水平预激活,无论是由内源性复制压力还是核苷酸消耗药物羟基脲引起的,都可以提高对多种 DNA 损伤剂的损伤容忍度。这些结果可能为利用检查点来保护正常细胞免受遗传毒性应激提供新的策略。

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