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Defects in homologous recombination repair in mismatch repair -deficient tumour cell lines

机译:错配修复缺陷的肿瘤细胞系中同源重组修复的缺陷

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摘要

MMR -deficiency increases the rate of mutations and often sensitizes cells to DSB-inducing agents (e. g. camptothecin and etoposide) as well as MMC (Jacob et a/., 2001 and Fiumicino et al., 2000). MMR -deficient tumour cell lines are also sensitive to the cytotoxic effects thymidine (Mohindra et al., 2002). This sensitivity is not a direct consequence of MMR -deficiency or alterations of DNA precursor metabolism. Instead, the results described in the present study suggest that MMR -deficient cells are sensitive to thymidine as a result of defects in HRR. The ScNeo recombination reporter substrate was used to determine the integrity of the HRR pathway in several MMR -proficient and -deficient tumour cell lines. Four MMR -deficient tumour cell lines were defective in the production of neo+ recombinants by homology based recombination following the transient expression of a site specific break. Furthermore, all MMR -deficient tumour cell lines tested were sensitive to the cross-linking agent MMC; an effect that is consistent with cells being deficient in HRR (including XRCC2, XRCC3 and BRCAI). To determine the alterations responsible for such HRR defects, genes known to be required for this pathway were screened for mutations in eight tumour cell lines. This revealed a heterozygous frameshift mutation within the RAD51 paralog, XRCC2, (342deIT) in SKUT-1 cells. 342delT was introduced into HRR proficient cells containing the ScNeo substrate. In SW480/SN. 3 transfectants, expression of 342delT conferred sensitivity to thymidine and MMC and suppressed HRR induced at the recombination reporter by thymidine but not by DSBs. In the MRC5VA/SN. 13 transfectants, expression of 342delT was accompanied by a decreased level of the full-length XRCC2. These cells were defective in the induction of HRR by either thymidine or DSBs. Thus 342delT suppresses recombination induced by thymidine in a dominant negative manner while recombination induced by DSBs appears to depend upon the level of wild-type XRCC2 as well as the expression of the mutant XRCC2 allele. These results suggest that HRR pathways responding to stalled replication forks or DSBs are genetically distinguishable. They further suggest a critical role for XRCC2 in HRR at replication forks, possibly in the loading of RAD51 onto gapped DNA.
机译:MMR缺乏症增加了突变率并且经常使细胞对DSB诱导剂(例如喜树碱和依托泊苷)以及MMC敏感(Jacob等,2001和Fiumicino等,2000)。 MMR缺陷的肿瘤细胞系也对胸腺嘧啶的细胞毒性作用敏感(Mohindra等,2002)。这种敏感性不是MMR缺乏或DNA前体代谢改变的直接结果。相反,本研究中描述的结果表明,由于HRR缺陷,MMR缺陷型细胞对胸苷敏感。 ScNeo重组报道分子底物用于确定几种MMR高效和缺陷型肿瘤细胞系中HRR途径的完整性。在瞬时表达位点特异性断裂后,通过基于同源性的重组,四种MMR缺陷型肿瘤细胞系在neo +重组体的生产中存在缺陷。此外,所有测试的MMR缺陷型肿瘤细胞系对交联剂MMC敏感。与缺乏HRR的细胞(包括XRCC2,XRCC3和BRCAI)一致的效果。为了确定造成这种HRR缺陷的改变,针对8种肿瘤细胞系中的突变筛选了已知对该途径必需的基因。这揭示了SKUT-1细胞中RAD51旁系同源物XRCC2(342deIT)内的杂合移码突变。 342delT被引入到含有ScNeo底物的HRR精通细胞中。在SW480 / SN中。在3种转染子中,342delT的表达赋予了对胸腺嘧啶核苷和MMC的敏感性,并抑制了在重组报告基因上由胸腺嘧啶核苷而不是由DSB诱导的HRR。在MRC5VA / SN中。在13个转染子中,342delT的表达伴随着全长XRCC2水平的降低。这些细胞在胸腺嘧啶核苷或DSB诱导HRR方面存在缺陷。因此342delT以显性负性方式抑制了胸腺嘧啶核苷诱导的重组,而DSB诱导的重组似乎取决于野生型XRCC2的水平以及突变体XRCC2等位基因的表达。这些结果表明,响应停滞的复制叉或DSB的HRR途径在遗传上是可区分的。他们进一步暗示了XRCC2在复制叉中在HRR中的关键作用,可能是在将RAD51加载到缺口DNA上。

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    Mohindra, Atul;

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  • 年度 2004
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