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Regulatory roles of tankyrase 1 at telomeres and in DNA repair: suppression of T-SCE and stabilization of DNA-PKcs

机译:端粒聚合酶在端粒和DNA修复中的调控作用:抑制T-SCE和稳定DNA-PKcs

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摘要

Intrigued by the dynamics of the seemingly contradictory yet integrated cellular responses to the requisites of preserving telomere integrity while also efficiently repairing damaged DNA, we investigated roles of the telomere associated poly(adenosine diphosphate [ADP]-ribose) polymerase (PARP) tankyrase 1 in both telomere function and the DNA damage response following exposure to ionizing radiation. Tankyrase 1 siRNA knockdown in human cells significantly elevated recombination specifically within telomeres, a phenotype with the potential of accelerating cellular senescence. Additionally, depletion of tankyrase 1 resulted in concomitant and rapid reduction of the nonhomologous end-joining protein DNA-PKcs, while Ku86 and ATM protein levels remained unchanged; DNA-PKcs mRNA levels were also unaffected. We found that the requirement of tankyrase 1 for DNA-PKcs protein stability reflects the necessity of its PARP enzymatic activity. We also demonstrated that depletion of tankyrase 1 resulted in proteasome-mediated DNA-PKcs degradation, explaining the associated defective damage response observed; i.e., increased sensitivity to ionizing radiation-induced cell killing, mutagenesis, chromosome aberration and telomere fusion. We provide the first evidence for regulation of DNA-PKcs by tankyrase 1 PARP activity and taken together, identify roles of tankyrase 1 with implications not only for DNA repair and telomere biology, but also for cancer and aging.
机译:对于看似矛盾但整合的细胞反应对维持端粒完整性的必要条件,同时也能有效修复受损的DNA的动力学引起了我们的兴趣,我们研究了端粒相关的聚腺苷二磷酸[ADP]-核糖)聚合酶(PARP)端粒聚合酶1的作用。暴露于电离辐射后,端粒功能和DNA损伤反应都没有。在人类细胞中Tankyrase 1 siRNA的敲低显着提高了重组,特别是端粒内的重组,端粒是具有加速细胞衰老潜能的表型。此外,tankyrase 1的消耗导致非同源末端连接蛋白DNA-PKcs的同时迅速减少,而Ku86和ATM蛋白水平保持不变。 DNA-PKcs mRNA水平也不受影响。我们发现,tankyrase 1对DNA-PKcs蛋白稳定性的要求反映了其PARP酶活性的必要性。我们还证明了tankyrase 1的耗竭导致蛋白酶体介导的DNA-PKcs降解,从而解释了观察到的相关缺陷损害反应。即增加了对电离辐射诱导的细胞杀伤,诱变,染色体畸变和端粒融合的敏感性。我们提供了第一个证据,通过tankyrase 1 PARP活性调节DNA-PKcs,并综合起来,确定tankyrase 1的作用不仅对DNA修复和端粒生物学有影响,而且对癌症和衰老也有影响。

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