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TIGAR regulates DNA damage and repair through pentosephosphate pathway and Cdk5-ATM pathway

机译:TIGAR通过磷酸戊糖途径和Cdk5-ATM途径调节DNA损伤和修复

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摘要

Previous study revealed that the protective effect of TIGAR in cell survival is mediated through the increase in PPP (pentose phosphate pathway) flux. However, it remains unexplored if TIGAR plays an important role in DNA damage and repair. This study investigated the role of TIGAR in DNA damage response (DDR) induced by genotoxic drugs and hypoxia in tumor cells. Results showed that TIGAR was increased and relocated to the nucleus after epirubicin or hypoxia treatment in cancer cells. Knockdown of TIGAR exacerbated DNA damage and the effects were partly reversed by the supplementation of PPP products NADPH, ribose, or the ROS scavenger NAC. Further studies with pharmacological and genetic approaches revealed that TIGAR regulated the phosphorylation of ATM, a key protein in DDR, through Cdk5. The Cdk5-AMT signal pathway involved in regulation of DDR by TIGAR defines a new role of TIGAR in cancer cell survival and it suggests that TIGAR may be a therapeutic target for cancers.
机译:先前的研究表明,TIGAR对细胞存活的保护作用是通过PPP(磷酸戊糖途径)通量的增加来介导的。但是,TIGAR是否在DNA损伤和修复中起重要作用尚待探索。这项研究调查了TIGAR在遗传毒性药物和肿瘤细胞缺氧引起的DNA损伤反应(DDR)中的作用。结果表明,在表柔比星或低氧治疗后,TIGAR增加并重新定位到细胞核中。剔除TIGAR会加剧DNA损伤,并且通过添加PPP产品NADPH,核糖或ROS清除剂NAC可以部分抵消这种影响。通过药理和遗传方法的进一步研究表明,TIGAR通过Cdk5调节DDR中的关键蛋白ATM的磷酸化。 TIGAR参与DDR调节的Cdk5-AMT信号通路定义了TIGAR在癌细胞存活中的新作用,这表明TIGAR可能是癌症的治疗靶标。

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