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在放线菌素存在的情况下,博来霉素及其去糖基化衍生物对DNA序列切割的改变。

Altered cleavage of DNA sequences by bleomycin and its deglycosylated derivative in the presence of actinomycin.

作者信息

Bailly C, Kénani A, Waring M J

机构信息

INSERM Unité 124 et Laboratoire de Phamracologie Antitumorale Moléculaire du Centre Oscar Lambret, Place de Verdun, 59045 Lille, France.

出版信息

Nucleic Acids Res. 1997 Apr 15;25(8):1516-22. doi: 10.1093/nar/25.8.1516.

Abstract

The antitumour antibiotics bleomycin and actinomycin are commonly used therapeutically in combination. One causes metal ion- and oxygen-dependent oxidative damage to DNA, while the other acts at the level of DNA via intercalation of its phenoxazone chromophore and probable inhibition of topoisomerases. Both drugs bind and/or cleave DNA primarily at guanine-containing sequences, which could lead to mutual interference. Using three different restriction fragments we show that binding of actinomycin to DNA causes major alterations in the sequence specificity of bleomycin.Fe-mediated cleavage, including the appearance of new cleavage sites and the suppression of others. The subtle sequence-dependence of the interference is illustrated by the different effects of actinomycin on DNA cleavage by the deglycobleomycin.Fe complex. Actinomycin sharply decreases the extent of cleavage at GpC sites by both bleomycin and deglycobleomycin whereas cleavage at GpT sites is much less affected, while novel cleavage sites are generated at GpA, ApT and, to a lesser extent, TpT steps. A dramatic increase in bleomycin.Fe cutting at GpA is barely detectable with deglycobleomycin.Fe, confirming that the carbohydrate moiety of bleomycin is important for DNA recognition. The results contribute to a better understanding of how two individually well-characterized small molecules interact simultaneoulsy with specific sequences in DNA and as such assist clarification of the principles governing drug-DNA recognition.

摘要

抗肿瘤抗生素博来霉素和放线菌素在治疗中通常联合使用。一种会导致金属离子和氧依赖性的DNA氧化损伤,而另一种则通过其吩恶嗪发色团的嵌入以及可能对拓扑异构酶的抑制作用在DNA水平发挥作用。两种药物主要在含鸟嘌呤的序列处结合和/或切割DNA,这可能导致相互干扰。我们使用三种不同的限制性片段表明,放线菌素与DNA的结合会导致博来霉素铁介导的切割序列特异性发生重大改变,包括新切割位点的出现和其他位点的抑制。放线菌素对去糖博来霉素铁复合物切割DNA的不同影响说明了这种干扰的微妙序列依赖性。放线菌素显著降低了博来霉素和去糖博来霉素在GpC位点的切割程度,而在GpT位点的切割受影响较小,同时在GpA、ApT以及程度较小的TpT位点产生了新的切割位点。用去糖博来霉素铁几乎检测不到GpA处博来霉素铁切割的显著增加,这证实了博来霉素的碳水化合物部分对DNA识别很重要。这些结果有助于更好地理解两个各自特征明确的小分子如何同时与DNA中的特定序列相互作用,从而有助于阐明药物 - DNA识别的原理。

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