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Relevance of the Fanconi anemia pathway in the response of human cells to trabectedin.

机译:Fanconi贫血途径与人类细胞对trabectedin反应的相关性。

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Trabectedin (Yondelis; ET-743) is a potent anticancer drug that binds to DNA by forming a covalent bond with a guanine in one strand and one or more hydrogen bonds with the opposite strand. Using a fluorescence-based melting assay, we show that one single trabectedin-DNA adduct increases the thermal stability of the double helix by >20 degrees C. As deduced from the analysis of phosphorylated H2AX and Rad51 foci, we observed that clinically relevant doses of trabectedin induce the formation of DNA double-strand breaks in human cells and activate homologous recombination repair in a manner similar to that evoked by the DNA interstrand cross-linking agent mitomycin C (MMC). Because one important characteristic of this drug is its marked cytotoxicity on cells lacking a functional Fanconi anemia (FA) pathway, we compared the response of different subtypes of FA cells to MMC and trabectedin. Our data clearly show that human cells with mutations in FANCA, FANCC, FANCF, FANCG, or FANCD1 genes are highly sensitive to both MMC and trabectedin. However, in marked contrast to MMC, trabectedin does not induce any significant accumulation of FA cells in G(2)-M. The critical relevance of FA proteins in the response of human cells to trabectedin reported herein, together with observations showing the role of the FA pathway in cancer suppression, strongly suggest that screening for mutations in FA genes may facilitate the identification of tumors displaying enhanced sensitivity to this novel anticancer drug. [Mol Cancer Ther 2008;7(5):1309-18].
机译:Trabectedin(Yondelis; ET-743)是一种有效的抗癌药物,通过在一条链中与鸟嘌呤形成共价键,在相反链中形成一个或多个氢键,从而与DNA结合。使用基于荧光的熔解测定法,我们表明一个单一的trabectedin-DNA加合物可将双螺旋的热稳定性提高20摄氏度以上。从对磷酸化H2AX和Rad51病灶的分析中可以得出,我们观察到trabectedin诱导人细胞中DNA双链断裂的形成,并以与DNA链间交联剂丝裂霉素C(MMC)相似的方式激活同源重组修复。因为该药物的一个重要特征是其对缺乏功能性范可尼贫血(FA)途径的细胞具有明显的细胞毒性,所以我们比较了FA细胞不同亚型对MMC和trabectedin的反应。我们的数据清楚地表明,具有FANCA,FANCC,FANCF,FANCG或FANCD1基因突变的人类细胞对MMC和trabectedin高度敏感。但是,与MMC形成鲜明对比的是,trabectedin不会在G(2)-M中诱导FA细胞的任何显着积累。本文报道的FA蛋白在人类细胞对trabectedin应答中的关键相关性以及观察到FA途径在抑制癌症中的作用的观察结果强烈表明,筛选FA基因中的突变可能有助于鉴定显示对FAb敏感性增强的肿瘤这种新的抗癌药。 [Mol Cancer Ther 2008; 7(5):1309-18]。

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