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Caspase-3 knockout attenuates radiation-induced tumor repopulation via impairing the ATM/p53/Cox-2/PGE

机译:Caspase-3敲除通过损害ATM / P53 / COX-2 / PGE衰减辐射诱导的肿瘤重新灌注

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摘要

Radiotherapy is an effective treatment for non-small cell lung cancer (NSCLC). However, irradiated, dying tumor cells generate potent growth stimulatory signals during radiotherapy that promote the repopulation of adjacent surviving tumor cells to cause tumor recurrence. We investigated the function of caspase-3 in NSCLC repopulation after radiotherapy. We found that radiotherapy induced a DNA damage response (DDR), activated caspase-3, and promoted tumor repopulation in NSCLC cells. Unexpectedly, caspase-3 knockout attenuated the ataxia-telangiectasia mutated (ATM)/p53-initiated DDR by decreasing nuclear migration of endonuclease G (EndoG), thereby reducing the growth-promoting effect of irradiated, dying tumor cells. We also identified p53 as a regulator of the Cox-2/PGE2 axis and its involvement in caspase-3-induced tumor repopulation after radiotherapy. In addition, injection of caspase-3 knockout NSCLC cells impaired tumor growth in a nude mouse model. Our findings reveal that caspase-3 promotes tumor repopulation in NSCLC cells by activating DDR and the downstream Cox-2/PGE2 axis. Thus, caspase-3-induced ATM/p53/Cox-2/PGE2 signaling pathway could provide potential therapeutic targets to reduce NSCLC recurrence after radiotherapy.
机译:放射疗法是对非小细胞肺癌(NSCLC)的有效处理。然而,照射的染色肿瘤细胞在放射治疗过程中产生有效的生长刺激信号,促进邻近存活的肿瘤细胞的重新迁移以引起肿瘤复发。我们研究了放疗后Caspase-3在NSCLC重新掺杂中的功能。我们发现放射疗法诱导DNA损伤响应(DDR),活化的caspase-3,并促进NSCLC细胞中的肿瘤重新掺杂。出乎意料地,Caspase-3敲除通过降低内切核酸酶G(engoG)的核迁移,减弱了Ataxia-Telanciectasia突变(ATM)/ p53-发起的DDR,从而降低了辐照,染色肿瘤细胞的生长促进作用。我们还将P53鉴定为Cox-2 / PGE2轴的调节剂及其参与放疗后Caspase-3诱导的肿瘤重新掺杂。此外,注射Caspase-3敲除NSCLC细胞裸鼠模型中的肿瘤生长受损。我们的发现表明,Caspase-3通过激活DDR和下游COX-2 / PGE2轴来促进NSCLC细胞中的肿瘤重新掺杂。因此,Caspase-3诱导的ATM / P53 / COX-2 / PGE2信号通路可以提供潜在的治疗靶标以减少放射治疗后的NSCLC复发。

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