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氨茴霉素与脱氧核糖核酸-丝裂霉素C复合物的结合。药物诱导的脱氧核糖核酸构象变化及丝裂霉素C结合协同性的证据。

Anthramycin binding to deoxyribonucleic acid-mitomycin C complexes. Evidence for drug-induced deoxyribonucleic acid conformational change and cooperativity in mitomycin C binding.

作者信息

Kaplan D J, Hurley L H

出版信息

Biochemistry. 1981 Dec 22;20(26):7572-80. doi: 10.1021/bi00529a036.

Abstract

Anthramycin and mitomycin C (MC) are two DNA reactive drugs, which bind covalently to GC pairs producing different effects on DNA: anthramycin stiffening and MC distorsion. This paper describes experiments in which we have used anthramycin as a probe to sense quantitatively the effects on DNA of MC binding. Saturation binding experiments show that both anthramycin and MC partially inhibit the binding of the other drug to DNA (maximum inhibition by MC and anthramycin, 22.4% and 19.7%, respectively) but by a mechanism other than direct site exclusion. This suggests that MC binds in the major groove of DNA, since anthramycin is known to bind in the minor groove. An abrupt reduction in the binding of anthramycin to DNA-MC complexes occurs between MC binding ratios of 0.030 and 0.035, which parallels and probably results from sudden intensification of a MC-induced DNA conformational change occurring between these binding ratios. Dialysis measurements indicate that anthramycin is very possibly binding at sites distant from MC sites and suggest a clustering of closely bound MC chromophores resulting from possible cooperative binding. S1 nuclease digest experiments demonstrate an initial enhancement of nuclease activity in DNA-MC complexes, the magnitude of which correlates well with the reduction of anthramycin binding, relative to the degree of MC binding. The enhanced nuclease activity in these complexes indicates regions of exposed DNA or helix base distortion which is related to or is the result of conformational change.

摘要

氨茴霉素和丝裂霉素C(MC)是两种能与DNA发生反应的药物,它们与GC碱基对共价结合,对DNA产生不同影响:氨茴霉素使DNA变硬,而MC使DNA扭曲。本文描述了一些实验,我们使用氨茴霉素作为探针来定量检测MC结合对DNA的影响。饱和结合实验表明,氨茴霉素和MC都部分抑制另一种药物与DNA的结合(MC和氨茴霉素的最大抑制率分别为22.4%和19.7%),但抑制机制并非直接的位点排斥。这表明MC结合在DNA的大沟中,因为已知氨茴霉素结合在小沟中。在MC结合比率为0.030至0.035之间,氨茴霉素与DNA - MC复合物的结合会突然减少,这与这些结合比率之间发生的MC诱导的DNA构象变化的突然加剧平行,并且可能是其结果。透析测量表明,氨茴霉素很可能在远离MC位点的位置结合,并表明可能由于协同结合导致紧密结合的MC发色团聚集。S1核酸酶消化实验表明,DNA - MC复合物中核酸酶活性最初增强,其增强幅度与氨茴霉素结合的减少程度(相对于MC结合程度)密切相关。这些复合物中增强的核酸酶活性表明存在暴露的DNA区域或螺旋碱基扭曲,这与构象变化相关或由构象变化导致。

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