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Tachpyridine a metal chelator induces G2 cell-cycle arrest activates checkpoint kinases and sensitizes cells to ionizing radiation

机译:金属螯合剂Tachpyridine诱导G2细胞周期停滞激活检查点激酶并使细胞对电离辐射敏感

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摘要

Iron is critical for cell growth and proliferation. Iron chelators are being explored for a number of clinical applications, including the treatment of neurodegenerative disorders, heart disease, and cancer. To uncover mechanisms of action of tachpyridine, a chelator currently undergoing preclinical evaluation as an anticancer agent, cell-cycle analysis was performed. Tachpyridine arrested cells at G2, a radiosensitive phase of the cell cycle, and enhanced the sensitivity of cancer cells but not nontransformed cells to ionizing radiation. G2 arrest was p53 independent and was accompanied by activation of the checkpoint kinases CHK1 and CHK2. G2 arrest was blocked by UCN-01, a CHK1 inhibitor, but proceeded in CHK2 knock-out cells, indicating a critical role for CHK1 in G2 arrest. Tachpyridine-induced cell-cycle arrest was abrogated in cells treated with caffeine, an inhibitor of the ataxia-telangiectasia mutated/ataxia-telangiectasia-mutated and Rad3-related (ATM/ATR) kinases. Further, G2 arrest proceeded in ATM-deficient cells but was blocked in ATR-deficient cells, implicating ATR as the proximal kinase in tachpyridine-mediated G2 arrest. Collectively, our results suggest that iron chelators may function as antitumor and radioenhancing agents and uncover a previously unexplored activity of iron chelators in activation of ATR and checkpoint kinases.
机译:铁对于细胞生长和增殖至关重要。铁螯合剂正在探索用于许多临床应用,包括神经退行性疾病,心脏病和癌症的治疗。为了揭示tachpyridine(一种目前正在作为抗癌剂进行临床前评估的螯合剂)的作用机理,进行了细胞周期分析。 Tachpyridine将细胞停滞在G2(细胞周期的放射敏感性阶段),并增强了癌细胞对电离辐射的敏感性,但未增强未转化细胞的敏感性。 G2逮捕是p53独立的,并伴随着关卡激酶CHK1和CHK2的激活。 G2阻滞被CHK1抑制剂UCN-01阻断,但在CHK2敲除细胞中继续进行,表明CHK1在G2阻滞中起关键作用。咖啡因是一种共济失调-毛细血管扩张突变/共济失调-毛细血管扩张和Rad3相关(ATM / ATR)激酶的抑制剂,废除了Tachpyridine诱导的细胞周期停滞。此外,G2阻滞在ATM缺陷型细胞中进行,但在ATR缺陷型细胞中被阻滞,暗示ATR是他吡啶吡啶介导的G2阻滞中的近端激酶。总的来说,我们的结果表明铁螯合剂可能起抗肿瘤剂和放射增强剂的作用,并揭示了铁螯合剂在ATR和检查点激酶激活中未曾探索过的活性。

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