首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Common fragile sites in colon cancer cell lines: role of mismatch repair, RAD51 and poly(ADP-ribose) polymerase-1.
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Common fragile sites in colon cancer cell lines: role of mismatch repair, RAD51 and poly(ADP-ribose) polymerase-1.

机译:结肠癌细胞系中常见的脆弱位点:错配修复,RAD51和聚(ADP-核糖)聚合酶-1的作用。

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摘要

Common fragile sites (CFS) are specific chromosomal areas prone to form gaps and breaks when cells are exposed to stresses that affect DNA synthesis, such as exposure to aphidicolin (APC), an inhibitor of DNA polymerases. The APC-induced DNA damage is repaired primarily by homologous recombination (HR), and RAD51, one of the key players in HR, participates to CFS stability. Since another DNA repair pathway, the mismatch repair (MMR), is known to control HR, we examined the influence of both the MMR and HR DNA repair pathways on the extent of chromosomal damage and distribution of CFS provoked by APC and/or by RAD51 silencing in MMR-deficient and -proficient colon cancer cell lines (i.e., HCT-15 and HCT-15 transfected with hMSH6, or HCT-116 and HCT-116/3+6, in which a part of a chromosome 3 containing the wild-type hMLH1 allele was inserted). Here, we show that MMR-deficient cells are more sensitive to APC-induced chromosomal damage particularly at the CFS as compared to MMR-proficient cells, indicating an involvement of MMR in the control of CFS stability. The most expressed CFS is FRA16D in 16q23, an area containing the tumour suppressor gene WWOX often mutated in colon cancer. We also show that silencing of RAD51 provokes a higher number of breaks in MMR-proficient cells with respect to their MMR-deficient counterparts, likely as a consequence of the combined inhibitory effects of RAD51 silencing on HR and MMR-mediated suppression of HR. The RAD51 silencing causes a broader distribution of breaks at CFS than that observed with APC. Treatment with APC of RAD51-silenced cells further increases DNA breaks in MMR-proficient cells. The RNAi-mediated silencing of PARP-1 does not cause chromosomal breaks or affect the expression/distribution of CFS induced by APC. Our results indicate that MMR modulates colon cancer sensitivity to chromosomal breaks and CFS induced by APC and RAD51 silencing.
机译:常见的脆弱位点(CFS)是特定的染色体区域,当细胞暴露于影响DNA合成的压力下(例如暴露于DNA聚合酶抑制剂Aphidicolin(APC))时,容易形成缺口和断裂。 APC诱导的DNA损伤主要通过同源重组(HR)修复,而RAD51是HR的关键参与者之一,参与了CFS的稳定性。由于已知另一种DNA修复途径失配修复(MMR)可以控制HR,因此我们检查了MMR和HR DNA修复途径对APC和/或RAD51引起的CFS染色体损伤程度和分布的影响MMR缺陷和熟练结肠癌细胞系(例如,用hMSH6或HCT-116和HCT-116 / 3 + 6转染的HCT-15和HCT-15)沉默,其中3号染色体的一部分包含野生-型hMLH1等位基因已插入)。在这里,我们显示MMR缺陷细胞对MPC敏感的细胞对APC诱导的染色体损伤更敏感,尤其是在CFS处,这表明MMR参与了CFS稳定性的控制。 CFS中表达最多的CFS是16q23中的FRA16D,该区域包含经常在结肠癌中突变的抑癌基因WWOX。我们还表明,相对于MMR缺陷对应物,RAD51沉默引起了MMR熟练细胞中更高数量的断裂,这可能是由于RAD51沉默对HR和MMR介导的HR抑制的联合作用的结果。与APC相比,RAD51沉默导致CFS处的断裂分布更广泛。用APC处理RAD51沉默的细胞进一步增加了MMR熟练细胞的DNA断裂。 RNAi介导的PARP-1沉默不会引起染色体断裂或影响APC诱导的CFS的表达/分布。我们的结果表明,MMR调节结肠癌对APC和RAD51沉默诱导的染色体断裂和CFS的敏感性。

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