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Specific killing of BRCA2-deficient tumours with inhibitors of poly(ADP-ribose) polymerase

机译:聚(ADP-核糖)聚合酶抑制剂特异性杀死BRCA2缺陷的肿瘤

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Poly( ADP-ribose) polymerase (PARP1) facilitates DNA repair by binding to DNA breaks and attracting DNA repair proteins to the site of damage(1-3). Nevertheless, PARP1(-/-) mice are viable, fertile and do not develop early onset tumours(4). Here, we show that PARP inhibitors trigger gamma-H2AX and RAD51 foci formation. We propose that, in the absence of PARP1, spontaneous single-strand breaks collapse replication forks and trigger homologous recombination for repair. Furthermore, we show that BRCA2-deficient cells, as a result of their deficiency in homologous recombination, are acutely sensitive to PARP inhibitors, presumably because resultant collapsed replication forks are no longer repaired. Thus, PARP1 activity is essential in homologous recombination-deficient BRCA2 mutant cells. We exploit this requirement in order to kill BRCA2-deficient tumours by PARP inhibition alone. Treatment with PARP inhibitors is likely to be highly tumour specific, because only the tumours ( which are BRCA2(-/-)) in BRCA2(+/-) patients are defective in homologous recombination. The use of an inhibitor of a DNA repair enzyme alone to selectively kill a tumour, in the absence of an exogenous DNA-damaging agent, represents a new concept in cancer treatment.
机译:聚(ADP-核糖)聚合酶(PARP1)通过与DNA断裂结合并将DNA修复蛋白吸引到损伤部位来促进DNA修复(1-3)。然而,PARP1(-/-)小鼠是活的,可育的,并且不会出现早期发作的肿瘤(4)。在这里,我们表明PARP抑制剂触发γ-H2AX和RAD51灶形成。我们建议,在没有PARP1的情况下,自发的单链断裂会破坏复制叉并触发同源重组以进行修复。此外,我们表明,由于缺乏BRCA2,它们缺乏同源重组,因此对PARP抑制剂具有极高的敏感性,这可能是因为合成的折叠叉无法修复。因此,PARP1活性在同源重组缺陷型BRCA2突变细胞中至关重要。我们利用这一要求是为了通过单独的PARP抑制杀死BRCA2缺陷的肿瘤。用PARP抑制剂治疗可能具有高度的肿瘤特异性,因为只有BRCA2(+/-)患者中的肿瘤(BRCA2(-/-))在同源重组方面存在缺陷。在不存在外源DNA损伤剂的情况下,单独使用DNA修复酶抑制剂选择性杀死肿瘤代表了癌症治疗中的新概念。

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