首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Elevated Cyclin G2 Expression Intersects with DNA Damage Checkpoint Signaling and Is Required for a Potent G2/M Checkpoint Arrest Response to Doxorubicin
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Elevated Cyclin G2 Expression Intersects with DNA Damage Checkpoint Signaling and Is Required for a Potent G2/M Checkpoint Arrest Response to Doxorubicin

机译:Cyclin G2表达升高与DNA损伤检查点信号交叉是对阿霉素进行有效的G2 / M检查点逮捕反应所必需的

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摘要

To maintain genomic integrity DNA damage response (DDR), signaling pathways have evolved that restrict cellular replication and allow time for DNA repair. CCNG2 encodes an unconventional cyclin homolog, cyclin G2 (CycG2), linked to growth inhibition. Its expression is repressed by mitogens but up-regulated during cell cycle arrest responses to anti-proliferative signals. Here we investigate the potential link between elevated CycG2 expression and DDR signaling pathways. Expanding our previous finding that CycG2 overexpression induces a p53-dependent G1/S phase cell cycle arrest in HCT116 cells, we now demonstrate that this arrest response also requires the DDR checkpoint protein kinase Chk2. In accord with this finding we establish that ectopic CycG2 expression increases phosphorylation of Chk2 on threonine 68. We show that DNA double strand break-inducing chemotherapeutics stimulate CycG2 expression and correlate its up-regulation with checkpoint-induced cell cycle arrest and phospho-modification of proteins in the ataxia telangiectasia mutated (ATM) and ATM and Rad3-related (ATR) signaling pathways. Using pharmacological inhibitors and ATM-deficient cell lines, we delineate the DDR kinase pathway promoting CycG2 up-regulation in response to doxorubicin. Importantly, RNAi-mediated blunting of CycG2 attenuates doxorubicin-induced cell cycle checkpoint responses in multiple cell lines. Employing stable clones, we test the effect that CycG2 depletion has on DDR proteins and signals that enforce cell cycle checkpoint arrest. Our results suggest that CycG2 contributes to DNA damage-induced G2/M checkpoint by enforcing checkpoint inhibition of CycB1-Cdc2 complexes.
机译:为了维持基因组完整性DNA损伤反应(DDR),已经发展出限制细胞复制并留出时间进行DNA修复的信号通路。 CCNG2编码与生长抑制有关的非常规细胞周期蛋白同源物,细胞周期蛋白G2(CycG2)。它的表达被有丝分裂原所抑制,但在细胞周期对抗增殖信号的阻滞反应中被上调。在这里,我们研究了升高的CycG2表达与DDR信号通路之间的潜在联系。扩展了我们先前的发现,即CycG2过表达在HCT116细胞中诱导了p53依赖的G1 / S期细胞周期停滞,我们现在证明了这种停滞反应还需要DDR检查点蛋白激酶Chk2。根据这一发现,我们确定异位CycG2表达增加了苏氨酸68上Chk2的磷酸化。我们表明,诱导DNA双链断裂的化学疗法刺激CycG2表达并将其上调与检查点诱导的细胞周期停滞和磷酸化修饰相关联。共济失调毛细血管扩张突变(ATM)以及ATM和Rad3相关(ATR)信号通路中的蛋白质。使用药理抑制剂和ATM缺陷型细胞系,我们描绘了DDR激酶途径,可促进对阿霉素的CycG2上调。重要的是,RNAi介导的CycG2钝化减弱了多细胞系中阿霉素诱导的细胞周期检查点反应。利用稳定的克隆,我们测试了CycG2耗竭对DDR蛋白和强制细胞周期检查点停滞的信号的影响。我们的结果表明,CycG2通过加强对CycB1-Cdc2复合物的检查点抑制作用而有助于DNA损伤诱导的G2 / M检查点。

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