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The Role of Nibrin in Doxorubicin-Induced Apoptosis and Cell Senescence in Nijmegen Breakage Syndrome Patients Lymphocytes

机译:奈布林在阿霉素诱导综合征患者淋巴细胞中阿霉素诱导的细胞凋亡和细胞衰老中的作用

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摘要

Nibrin plays an important role in the DNA damage response (DDR) and DNA repair. DDR is a crucial signaling pathway in apoptosis and senescence. To verify whether truncated nibrin (p70), causing Nijmegen Breakage Syndrome (NBS), is involved in DDR and cell fate upon DNA damage, we used two (S4 and S3R) spontaneously immortalized T cell lines from NBS patients, with the founding mutation and a control cell line (L5). S4 and S3R cells have the same level of p70 nibrin, however p70 from S4 cells was able to form more complexes with ATM and BRCA1. Doxorubicin-induced DDR followed by cell senescence could only be observed in L5 and S4 cells, but not in the S3R ones. Furthermore the S3R cells only underwent cell death, but not senescence after doxorubicin treatment. In contrary to doxorubicin treatment, cells from all three cell lines were able to activate the DDR pathway after being exposed to γ-radiation. Downregulation of nibrin in normal human vascular smooth muscle cells (VSMCs) did not prevent the activation of DDR and induction of senescence. Our results indicate that a substantially reduced level of nibrin or its truncated p70 form is sufficient to induce DNA-damage dependent senescence in VSMCs and S4 cells, respectively. In doxorubicin-treated S3R cells DDR activation was severely impaired, thus preventing the induction of senescence.
机译:Nibrin在DNA损伤反应(DDR)和DNA修复中起着重要作用。 DDR是细胞凋亡和衰老的关键信号通路。为了验证导致奈梅亨断裂综合症(NBS)的截短型脑蛋白(p70)是否参与DDR和DNA损伤时的细胞命运,我们使用了NBS患者的两种自发永生的T细胞系,其发生的突变和对照细胞系(L5)。 S4和S3R细胞具有相同水平的p70脑啡肽,但是来自S4细胞的p70能够与ATM和BRCA1形成更多复合物。阿霉素诱导的DDR随后细胞衰老只能在L5和S4细胞中观察到,而在S3R细胞中则观察不到。此外,阿霉素处理后,S3R细胞仅发生细胞死亡,而未发生衰老。与阿霉素处理相反,来自所有三个细胞系的细胞在暴露于γ辐射后均能够激活DDR途径。正常人血管平滑肌细胞(VSMCs)中脑啡肽的下调并不能阻止DDR的激活和衰老的诱导。我们的结果表明,大幅降低的脑啡肽或其截短的p70形式足以分别诱导VSMC和S4细胞中DNA损伤依赖性衰老。在阿霉素处理的S3R细胞中,DDR激活受到严重损害,从而阻止了衰老的诱导。

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