首页> 外文期刊>Nucleic Acids Research >The human oncoprotein MDM2 induces replication stress eliciting early intra-S-phase checkpoint response and inhibition of DNA replication origin firing
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The human oncoprotein MDM2 induces replication stress eliciting early intra-S-phase checkpoint response and inhibition of DNA replication origin firing

机译:人类癌蛋白MDM2诱导复制应激,引起早期S期内关卡反应并抑制DNA复制起点

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Conventional paradigm ascribes the cell proliferative function of the human oncoprotein mouse double minute2 (MDM2) primarily to its ability to degrade p53. Here we report that in the absence of p53, MDM2 induces replication stress eliciting an early S-phase checkpoint response to inhibit further firing of DNA replication origins. Partially synchronized lung cells cultured from p53-/-:MDM2 transgenic mice enter S phase and induce S-phase checkpoint response earlier than lung cells from p53-/- mice and inhibit firing of DNA replication origins. MDM2 activates chk1 phosphorylation, elevates mixed lineage lymphoma histone methyl transferase levels and promotes checkpoint-dependent tri-methylation of histone H3 at lysine 4, known to prevent firing of late replication origins at the early S phase. In the absence of p53, a condition that disables inhibition of cyclin A expression by MDM2, MDM2 increases expression of cyclin D2 and A and hastens S-phase entry of cells. Consistently, inhibition of cyclin-dependent kinases, known to activate DNA replication origins during firing, inhibits MDM2-mediated induction of chk1 phosphorylation indicating the requirement of this activity in MDM2-mediated chk1 phosphorylation. Our data reveal a novel pathway, defended by the intra-S-phase checkpoint, by which MDM2 induces unscheduled origin firing and accelerates S-phase entry of cells in the absence of p53.
机译:常规范例将人类癌蛋白小鼠doubleminute2(MDM2)的细胞增殖功能归因于其降解p53的能力。在这里我们报告说,在没有p53的情况下,MDM2诱导复制应激,引起早期S期检查点反应,以抑制DNA复制起点的进一步释放。从p53-/-:MDM2转基因小鼠培养的部分同步化的肺细胞进入S期,并比p53-/-小鼠的肺细胞更早诱导S期检查点反应,并抑制了DNA复制起点的产生。 MDM2激活chk1磷酸化,提高混合谱系淋巴瘤组蛋白甲基转移酶的水平,并促进赖氨酸4处组蛋白H3的检查点依赖性三甲基化,已知这可防止在S期早期激发晚期复制起点。在不存在p53的情况下(该条件无法通过MDM2抑制细胞周期蛋白A的表达),MDM2增加细胞周期蛋白D2和A的表达并加速细胞的S期进入。一致地,抑制已知在放电过程中激活DNA复制起点的细胞周期蛋白依赖性激酶,抑制了MDM2介导的chk1磷酸化的诱导,表明这种活性需要MDM2介导的chk1磷酸化。我们的数据揭示了一种由S阶段内检查点捍卫的新颖途径,在没有p53的情况下,MDM2诱导非计划起源激发并加速S阶段细胞进入。

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