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Fanconi Anemia FANCG Protein in Mitigating Radiation- and Enzyme-Induced DNA Double-Strand Breaks by Homologous Recombination in Vertebrate Cells

机译:范科尼贫血FANCG蛋白在脊椎动物细胞中通过同源重组减轻辐射和酶诱导的DNA双链断裂。

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摘要

The rare hereditary disorder Fanconi anemia (FA) is characterized by progressive bone marrow failure, congenital skeletal abnormality, elevated susceptibility to cancer, and cellular hypersensitivity to DNA cross-linking chemicals and sometimes other DNA-damaging agents. Molecular cloning identified six causative genes (FANCA, -C, -D2, -E, -F, and -G) encoding a multiprotein complex whose precise biochemical function remains elusive. Recent studies implicate this complex in DNA damage responses that are linked to the breast cancer susceptibility proteins BRCA1 and BRCA2. Mutations in BRCA2, which participates in homologous recombination (HR), are the underlying cause in some FA patients. To elucidate the roles of FA genes in HR, we disrupted the FANCG/XRCC9 locus in the chicken B-cell line DT40. FANCG-deficient DT40 cells resemble mammalian fancg mutants in that they are sensitive to killing by cisplatin and mitomycin C (MMC) and exhibit increased MMC and radiation-induced chromosome breakage. We find that the repair of I-SceI-induced chromosomal double-strand breaks (DSBs) by HR is decreased ∼9-fold in fancg cells compared with the parental and FANCG-complemented cells. In addition, the efficiency of gene targeting is mildly decreased in FANCG-deficient cells, but depends on the specific locus. We conclude that FANCG is required for efficient HR-mediated repair of at least some types of DSBs.
机译:罕见的遗传性疾病范可尼贫血(FA)的特征是进行性骨髓衰竭,先天性骨骼异常,对癌症的敏感性增加以及对DNA交联化学物质和某些其他DNA破坏剂的细胞超敏反应。分子克隆鉴定了六个致病基因(FANCA,-C,-D2,-E,-F和-G),它们编码一种多蛋白复合物,其精确的生化功能仍然难以捉摸。最近的研究将这种复合物牵连到与乳腺癌易感性蛋白BRCA1和BRCA2相关的DNA损伤反应中。参与同源重组(HR)的BRCA2突变是某些FA患者的根本原因。为了阐明FA基因在HR中的作用,我们破坏了鸡B细胞株DT40中的FANCG / XRCC9基因座。缺乏FANCG的DT40细胞类似于哺乳动物的fancg突变体,它们对顺铂和丝裂霉素C(MMC)的杀伤敏感,并表现出MMC增加和辐射诱导的染色体断裂。我们发现,与亲代和FANCG互补细胞相比,fancg细胞中HR对I-SceI诱导的染色体双链断裂(DSBs)的修复降低了约9倍。此外,在FANCG缺陷型细胞中,基因靶向的效率略有下降,但取决于特定的基因座。我们得出的结论是,至少某些类型的DSB进行有效的HR介导的修复需要FANCG。

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