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首页> 外文期刊>Oncogene >Parallel induction of ATM-dependent pro- and antiapoptotic signals in response to ionizing radiation in murine lymphoid tissue
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Parallel induction of ATM-dependent pro- and antiapoptotic signals in response to ionizing radiation in murine lymphoid tissue

机译:响应小鼠淋巴组织中的电离辐射,并行诱导ATM依赖性促凋亡和抗凋亡信号

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摘要

The ATM protein kinase, functionally missing in patients with the human genetic disorder ataxia-telangiectasia, is a master regulator of the cellular network induced by DNA double-strand breaks. The ATM gene is also frequently mutated in sporadic cancers of lymphoid origin. Here, we applied a functional genomics approach that combined gene expression profiling and computational promoter analysis to obtain global dissection of the transcriptional response to ionizing radiation in murine lymphoid tissue. Cluster analysis revealed a prominent pattern characterizing dozens of genes whose response to irradiation was Atm-dependent. Computational analysis identified significant enrichment of the binding site signatures of NF-B and p53 among promoters of these genes, pointing to the major role of these two transcription factors in mediating the Atm-dependent transcriptional response in the irradiated lymphoid tissue. Examination of the response showed that pro- and antiapoptotic signals were simultaneously induced, with the proapoptotic pathway mediated by p53 targets, and the prosurvival pathway by NF-B targets. These findings further elucidate the molecular network induced by IR, point to novel putative NF-B targets, and suggest a mechanistic model for cellular balancing between pro- and antiapoptotic signals induced by IR in lymphoid tissues, which has implications for cancer management. The emerging model suggests that restoring the p53-mediated apoptotic arm while blocking the NF-B-mediated prosurvival arm could effectively increase the radiosensitivity of lymphoid tumors.
机译:在人类遗传性共济失调毛细血管扩张症患者中功能缺失的ATM蛋白激酶是DNA双链断裂诱导的细胞网络的主要调节剂。在散发性淋巴源性癌症中,ATM基因也经常发生突变。在这里,我们应用了功能基因组学方法,将基因表达谱分析和计算启动子分析相结合,以获得鼠淋巴组织中对电离辐射的转录响应的整体解剖。聚类分析揭示了一个突出的模式,该模式表征了数十个基因对辐射的反应是依赖于Atm的。计算分析发现,在这些基因的启动子之间,NF-B和p53的结合位点标记显着富集,指出这两个转录因子在介导照射的淋巴组织中Atm依赖性转录反应中的主要作用。反应的检查表明,前和抗凋亡信号被同时诱导,其凋亡途径由p53靶介导,而生存途径由NF-B靶介导。这些发现进一步阐明了IR诱导的分子网络,指出了新的推定的NF-B靶标,并提出了IR模型在淋巴组织中诱导的促凋亡和抗凋亡信号之间细胞平衡的机制模型,这对癌症的治疗具有重要意义。新兴模型表明,在阻断NF-B介导的生存臂的同时恢复p53介导的凋亡臂可以有效地提高淋巴瘤的放射敏感性。

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