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抗氧化剂N-乙酰半胱氨酸及其代谢产物对博来霉素诱导的PM2噬菌体DNA损伤的影响。

Influence of the antioxidant N-acetylcysteine and its metabolites on damage induced by bleomycin in PM2 bacteriophage DNA.

作者信息

Cloos J, Gille J J, Steen I, Lafleur M V, Retèl J, Snow G B, Braakhuis B J

机构信息

Department of Otolaryngology/Head and Neck Surgery, Free University Hospital, Amsterdam, The Netherlands.

出版信息

Carcinogenesis. 1996 Feb;17(2):327-31. doi: 10.1093/carcin/17.2.327.

Abstract

Bleomycin is considered to be a useful model compound for studying environmental carcinogenesis, due to its broad spectrum of DNA damaging properties. In addition, bleomycin is a useful antitumor drug because of its cytotoxic properties. To investigate the influence of the antioxidant N-acetylcysteine and its metabolites glutathione and cysteine on bleomycin-induced DNA damage and more importantly to gain insight into the biological relevance of such damage, PM2 DNA was exposed to Cu(2+)-bleomycin in the presence and absence of the thiols N-acetylcysteine, glutathione and cysteine. It was found that the presence of these thiols led to a considerable enhancement of bleomycin-induced single- and double-strand breaks and a concomitant decrease in the biological activity of PM2 DNA in a dose-dependent way. A similar observation was made when ascorbic acid was used. Bleomycin showed no DNA damaging activity when PM2 DNA was pretreated with the strong Fe ion chelator desferal and its activity was strongly inhibited by the addition of Cu2+ ions or under hypoxic (N2) conditions. Cu(2+)-bleomycin under our conditions is not active by itself, but most probably after binding to DNA exchanges Cu2+ for Fe3+ bound to DNA. Fe(3+)-bleomycin is then reduced to Fe(2+)-bleomycin, a process potentiated by the added antioxidants, and subsequently activated by O2. The contribution to biological inactivation of bleomycin alone or in the presence of ascorbic acid is only approximately 15%. The contribution to lethality in the presence of thiols is higher. These results indicate that ascorbic acid only enhances the DNA damaging properties of bleomycin, whereas the thiol compounds in addition influence the type of DNA damage. The remainder of the biological inactivation is probably caused by double damage, such as single-strand breaks with closely opposed alkali-labile sites or base damage.

摘要

博来霉素因其广泛的DNA损伤特性,被认为是研究环境致癌作用的一种有用的模型化合物。此外,博来霉素因其细胞毒性特性,是一种有用的抗肿瘤药物。为了研究抗氧化剂N - 乙酰半胱氨酸及其代谢产物谷胱甘肽和半胱氨酸对博来霉素诱导的DNA损伤的影响,更重要的是深入了解这种损伤的生物学相关性,将PM2 DNA在存在和不存在硫醇N - 乙酰半胱氨酸、谷胱甘肽和半胱氨酸的情况下暴露于Cu(2 +)-博来霉素。发现这些硫醇的存在导致博来霉素诱导的单链和双链断裂显著增加,同时PM2 DNA的生物活性以剂量依赖的方式降低。使用抗坏血酸时也有类似的观察结果。当用强铁离子螯合剂去铁胺预处理PM2 DNA时,博来霉素没有DNA损伤活性,并且其活性在添加Cu2 +离子或在缺氧(N2)条件下受到强烈抑制。在我们的条件下,Cu(2 +)-博来霉素本身没有活性,但很可能在与DNA结合后,将与DNA结合的Cu2 +交换为Fe3 +。然后Fe(3 +)-博来霉素被还原为Fe(2 +)-博来霉素,这一过程因添加的抗氧化剂而增强,随后被O2激活。单独的博来霉素或在存在抗坏血酸的情况下对生物失活的贡献仅约为15%。在存在硫醇的情况下对致死率的贡献更高。这些结果表明,抗坏血酸仅增强博来霉素的DNA损伤特性,而硫醇化合物还影响DNA损伤的类型。其余的生物失活可能是由双重损伤引起的,例如具有紧密相对的碱不稳定位点的单链断裂或碱基损伤。

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