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首页> 外文期刊>Chemico-biological interactions >A novel carbohydrate derived compound FCP5 causes DNA strand breaks and oxidative modifications of DNA bases in cancer cells
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A novel carbohydrate derived compound FCP5 causes DNA strand breaks and oxidative modifications of DNA bases in cancer cells

机译:新型碳水化合物衍生化合物FCP5导致癌细胞中DNA链断裂和DNA碱基的氧化修饰

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摘要

1,5-Anhydro-6-deoxy-methane-sulfamido-D-glucitol (FCP5) is a functionalized carbohydrate containing functional groups that render it potentially therapeutically useful. According to our concept of 'functional carb-pharmacophores' (FCPs) incorporation of the methanesulfonamido pharmacophore to 1,5 glucitol could create a therapeutically useful compound. Our previous studies revealed that FCP5 was cytotoxic to cancer cells. Therefore, in this work we assessed the cytotoxic mechanisms of FCP5 in four cancer cell lines HeLa, LoVo, A549 and MCF-7, with particular focus on DNA damage and repair. A broad spectrum of methods, including comet assay with modifications, DNA repair enzyme assay, plasmid relaxation assay, and DNA fragmentation assay, were used. We also checked the potential for FCP5 to induce apoptosis. The results show that FCP5 can induce DNA strand breaks as well as oxidative modifications of DNA bases. DNA lesions induced by FCP5 were not entirely repaired in HeLa cells and DNA repair kinetics differs from other cell lines. Results from molecular docking and plasmid relaxation assay suggest that FCP5 binds to the major groove of DNA with a preference for adenosine thymine base pair sequences and directly induces DNA strand breaks. Thus, FCP5 may represent a novel lead for the design of new major groove-binding compounds. The results also confirmed the validity of functional carb-pharmacophores as a new source of innovative drugs. (C) 2014 Elsevier Ireland Ltd. All rights reserved.
机译:1,5-脱水-6-脱氧甲烷-磺酰胺基-D-葡萄糖醇(FCP5)是一种含有官能团的功能化碳水化合物,使其具有潜在的治疗用途。根据我们的“功能性碳水化合物药效基团”(FCP)的概念,将甲磺酰胺基药效基团并入1,5葡萄糖醇中可产生治疗上有用的化合物。我们以前的研究表明,FCP5对癌细胞具有细胞毒性。因此,在这项工作中,我们评估了FCP5在四种癌细胞系HeLa,LoVo,A549和MCF-7中的细胞毒性机制,特别着重于DNA损伤和修复。使用了多种方法,包括修饰的彗星测定,DNA修复酶测定,质粒松弛测定和DNA片段测定。我们还检查了FCP5诱导凋亡的潜力。结果表明,FCP5可以诱导DNA链断裂以及DNA碱基的氧化修饰。 FCP5诱导的DNA损伤在HeLa细胞中并未完全修复,并且DNA修复动力学不同于其他细胞系。分子对接和质粒松弛试验的结果表明,FCP5与DNA的主要沟结合,优先选择腺苷胸腺嘧啶碱基对序列,并直接诱导DNA链断裂。因此,FCP5可能代表了设计新的主要凹槽结合化合物的新颖线索。该结果还证实了功能性碳水化合物药效团作为创新药物的新来源的有效性。 (C)2014 Elsevier Ireland Ltd.保留所有权利。

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