Blm与Mus81在发育、生育力、基因组完整性及癌症抑制方面的协同作用。

Cooperation of Blm and Mus81 in development, fertility, genomic integrity and cancer suppression.

作者信息

El Ghamrasni S, Cardoso R, Halaby M J, Zeegers D, Harding S, Kumareswaran R, Yavorska T, Chami N, Jurisicova A, Sanchez O, Hande M P, Bristow R, Hakem R, Hakem A

机构信息

1] Department of Medical Biophysics, University of Toronto, Ontario Cancer Institute, University Health Network, Toronto, Ontario, Canada [2] Laboratory of Biotechnology, Faculty of Sciences DHEM, University SMBA, Fez, Morocco.

Department of Medical Biophysics, University of Toronto, Ontario Cancer Institute, University Health Network, Toronto, Ontario, Canada.

出版信息

Oncogene. 2015 Apr 2;34(14):1780-9. doi: 10.1038/onc.2014.121. Epub 2014 May 26.

Abstract

BLM is a DNA helicase important for the restart of stalled replication forks and for homologous recombination (HR) repair. Mutations of BLM lead to Bloom Syndrome, a rare autosomal recessive disorder characterized by elevated levels of sister chromatid exchanges (SCEs), dwarfism, immunodeficiency, infertility and increased cancer predisposition. BLM physically interacts with MUS81, an endonuclease involved in the restart of stalled replication forks and HR repair. Herein we report that loss of Mus81 in Blm hypomorph mutant mice leads to infertility, and growth and developmental defects that are not observed in single mutants. Double mutant cells and mice were hypersensitive to Mitomycin C and γ-irradiation (IR) compared with controls and their repair of DNA double-strand breaks (DSBs) mediated by HR pathway was significantly defective, whereas their non-homologous-end-joining repair was elevated compared with controls. We also demonstrate the importance of the loss of the nuclease activity of Mus81 in the defects observed in Mus81(-/-) and double mutant cells. Exacerbated IR-induced chromosomal aberration was observed in double mutant mice and despite their reduced SCE levels, these mutants showed increased tumorigenesis risks. Our data highlight the importance of Mus81 and Blm in DNA DSB repair pathways, fertility, development and cancer.

摘要

BLM是一种DNA解旋酶,对停滞的复制叉重新启动和同源重组(HR)修复至关重要。BLM突变会导致布卢姆综合征,这是一种罕见的常染色体隐性疾病,其特征是姐妹染色单体交换(SCE)水平升高、侏儒症、免疫缺陷、不育以及癌症易感性增加。BLM与MUS81发生物理相互作用,MUS81是一种参与停滞复制叉重新启动和HR修复的核酸内切酶。在此我们报告,在Blm低表达突变小鼠中Mus81缺失会导致不育以及生长和发育缺陷,而这些缺陷在单突变体中未观察到。与对照相比,双突变细胞和小鼠对丝裂霉素C和γ射线照射(IR)高度敏感,并且它们通过HR途径介导的DNA双链断裂(DSB)修复存在显著缺陷,而与对照相比,它们的非同源末端连接修复有所增强。我们还证明了Mus81核酸酶活性缺失在Mus81(-/-)和双突变细胞中观察到的缺陷中的重要性。在双突变小鼠中观察到IR诱导的染色体畸变加剧,尽管它们的SCE水平降低,但这些突变体显示出肿瘤发生风险增加。我们的数据突出了Mus81和Blm在DNA DSB修复途径、生育能力、发育和癌症中的重要性。

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