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Differential Toxicity of DNA Adducts of Mitomycin C

机译:丝裂霉素C DNA加合物的差异毒性

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摘要

The clinically used antitumor agent mitomycin C (MC) alkylates DNA upon reductive activation, forming six covalent DNA adducts in this process. This review focuses on differential biological effects of individual adducts in various mammalian cell cultures, observed in the authors' laboratories. Evidence is reviewed that various adducts are capable of inducing different cell death pathways in cancer cells.This evidence is derived from a parallel study of MC and its derivatives 2,7-diaminomitosene (2,7-DAM) which is the main metabolite of MC and forms two mono-adducts with DNA, and decarbamoyl mitomycin C (DMC), which alkylates and cross-links DNA, predominantly with a chirality opposite to that of the DNA adducts of MC. 2,7-DAM is not cytotoxic and does not activate the p53 pathway while MC and DMC are cytotoxic and able to activate the p53 pathway. DMC is more cytotoxic than MC and can also kill p53-deficient cells by inducing degradation of Checkpoint 1 protein, which is not seen with MC treatment of the p53-deficient cells. This difference in the cell death pathways activated by the MC and DMC is attributed to differential signaling by the DNA adducts of DMC. We hypothesize that the different chirality of the adduct-to-DNA linkage has a modulating influence on the choice of pathway.
机译:临床使用的抗肿瘤药物丝裂霉素C(MC)在还原过程中将DNA烷基化,在此过程中形成6个共价DNA加合物。作者的实验室中观察到,本综述着重于各种哺乳动物细胞培养物中各个加合物的不同生物学效应。综述了多种加合物能够诱导癌细胞中不同的细胞死亡途径的证据,该证据来自对MC及其衍生物2,7-二氨基油烯(2,7-DAM)的平行研究,后者是MC的主要代谢产物并与DNA形成两个单加合物,并与氨基甲酰丝裂霉素C(DMC)一起烷基化和交联DNA,主要具有与MC的DNA加合物相反的手性。 2,7-DAM无细胞毒性,不会激活p53途径,而MC和DMC具有细胞毒性并能够激活p53途径。 DMC比MC具有更强的细胞毒性,并且还可以通过诱导Checkpoint 1蛋白降解来杀死p53缺陷细胞,这是MC处理p53缺陷细胞所没有的。由MC和DMC激活的细胞死亡途径的这种差异归因于DMC的DNA加合物的差异信号转导。我们假设加合物-DNA键的不同手性对途径的选择具有调节作用。

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