首页> 外文期刊>Human Molecular Genetics >DNA cross-link-dependent RAD50/MRE11/NBS1 subnuclear assembly requires the Fanconi anemia C protein.
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DNA cross-link-dependent RAD50/MRE11/NBS1 subnuclear assembly requires the Fanconi anemia C protein.

机译:DNA交联依赖性RAD50 / MRE11 / NBS1亚核装配需要Fanconi贫血C蛋白。

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摘要

Fanconi anemia (FA) is a cancer-predisposition syndrome characterized by hypersensitivity to interstrand-cross-link (ICL) inducers. FA hypersensitivity to ICL has been correlated with alterations in homologous recombination, non-homologous end-joining, telomere maintenance, DNA-damage assessment and checkpoint regulation, processes in which the components of the RAD50/MRE11/NBS1 (RMN) complex are involved. To better characterize the mechanisms by which ICL are processed in human cells and to gain insight into their toxicity in FA, we examined (i) the RMN complex assembling in response to the ICL inducers mitomycin C (MMC) and photoactivated 8-methoxypsoralen and (ii) the proficiency of FA cells to perform RMN activation in response to ICL inducers. We show here that ICL activates the assembly of the RMN proteins into subnuclear foci, and that their formation proceeds independently of ICL incision, a step mainly dependent on XP-F/ERCC1 heterodimer activity. Interestingly, FA cells were unable to form RMN foci in response to either ICL inducer. Analysis by pulsed-field gel electrophoresis and single-cell gel electrophoresis of MMC-treated cells showed that FA cells from complementation group C (FA-C cells, defective in the FANCC gene) form double-strand breaks and unhook MMC-induced ICL similarly to FANCC wild-type cells. These observations imply that the absence of RMN assembly in FA-C cells is not simply due to the absence of DNA ends produced as intermediates of ICL processing, and indicates a direct role for FANCC in RMN focus assembly in response to ICL inducers. Moreover, we show that the formation of foci, including BRCA1 and/or RAD51 proteins, is significantly delayed in FA cells. These alterations in the assembly of DNA-repair proteins in FA provide an interpretation for the DNA-damage processing anomalies observed in FA cells and for the genetic instability and the cancer predisposition of the syndrome.
机译:范可尼贫血(FA)是一种癌症易感综合症,其特征在于对链间交联(ICL)诱导剂过敏。 FA对ICL的超敏反应与同源重组,非同源末端连接,端粒维持,DNA损伤评估和检查点调节的改变相关,其中涉及RAD50 / MRE11 / NBS1(RMN)复合物的组成部分。为了更好地表征人细胞中处理ICL的机制并深入了解其在FA中的毒性,我们检查了(i)响应ICL诱导剂丝裂霉素C(MMC)和光活化的8-甲氧基补骨脂素而组装的RMN复合物,以及( ii)FA细胞响应ICL诱导物执行RMN激活的能力。我们在这里显示ICL激活RMN蛋白组装成亚核灶,并且其形成独立于ICL切口而进行,这一步骤主要取决于XP-F / ERCC1异二聚体活性。有趣的是,FA细胞不能响应任何一种ICL诱导物而形成RMN病灶。 MMC处理细胞的脉冲场凝胶电泳和单细胞凝胶电泳分析表明,来自互补组C的FA细胞(FA-C细胞,FANCC基因有缺陷)形成双链断裂,并类似地解钩MMC诱导的ICL到FANCC野生型细胞。这些观察结果暗示FA-C细胞中不存在RMN组装不仅仅是由于不存在作为ICL加工的中间体而产生的DNA末端,并且表明FANCC在响应ICL诱导剂的RMN聚焦组装中具有直接作用。此外,我们显示,FA细胞中包括BRCA1和/或RAD51蛋白在内的病灶的形成明显延迟。 FA中DNA修复蛋白组装中的这些变化为FA细胞中观察到的DNA损伤加工异常以及遗传不稳定性和该综合征的癌症易感性提供了解释。

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