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源自7,12-二甲基苯并[a]蒽代谢产物的模型化合物的嵌入性DNA结合

Intercalative DNA binding of model compounds derived from metabolites of 7,12-dimethylbenz[a]anthracene.

作者信息

Zegar I S, Prakash A S, LeBreton P R

机构信息

Department of Chemistry, University of Illinois, Chicago 60680.

出版信息

J Biomol Struct Dyn. 1984 Dec;2(3):531-41. doi: 10.1080/07391102.1984.10507590.

Abstract

The DNA binding of nonreactive model compounds of metabolites of 7,12-dimethylbenz[a]-anthracene (DMBA)1 was studied in fluorescence quenching and fluorescence lifetime experiments. The model compounds examined were DMA and 8,9,10,11-tetrahydro-BA. DMA is a pi electron model of a highly carcinogenic bay region epoxide of DMBA, 8,9,10,11-tetrahydro-BA is a model compound of a less carcinogenic DMBA epoxide. The results indicate that the binding of DMA occurs primarily via intercalation. In 15% methanol the binding constant is 3.1 x 10(3) M-1. In 15% methanol and at DNA phosphate levels of 5.0 x 10(-4) M the intercalative binding of DMA is reduced by a factor of 6.2 when 5.0 x 10(-4) M Mg+2 is added. The DMA binding constant for intercalation is reduced by more than a factor of 4 when the methanol content of the solvent is increased from 0% to 20%. Finally DMA binding arising from pi interactions with the DNA bases is reduced more than 15 times when the DNA is denatured. For 8,9,10,11-tetrahydro-BA in 15% methanol the binding constant for intercalation is 6 times lower than that for DMA. These results along with previously reported binding data on other model compounds suggest that bay region metabolites of DMBA readily participate in physical pi stacking interactions with DNA.

摘要

在荧光猝灭和荧光寿命实验中,对7,12 - 二甲基苯并[a]蒽(DMBA)1代谢物的非反应性模型化合物的DNA结合进行了研究。所检测的模型化合物为DMA和8,9,10,11 - 四氢 - BA。DMA是DMBA高度致癌的湾区环氧化物的π电子模型,8,9,10,11 - 四氢 - BA是致癌性较低的DMBA环氧化物的模型化合物。结果表明,DMA的结合主要通过嵌入发生。在15%甲醇中,结合常数为3.1×10³ M⁻¹。在15%甲醇且DNA磷酸盐水平为5.0×10⁻⁴ M时,添加5.0×10⁻⁴ M Mg²⁺后,DMA的嵌入结合降低了6.2倍。当溶剂中的甲醇含量从0%增加到20%时,DMA嵌入的结合常数降低了4倍多。最后,当DNA变性时,由与DNA碱基的π相互作用引起的DMA结合降低了15倍以上。对于15%甲醇中的8,9,10,11 - 四氢 - BA,其嵌入的结合常数比DMA低6倍。这些结果以及先前报道的其他模型化合物的结合数据表明,DMBA的湾区代谢物很容易与DNA参与物理π堆积相互作用。

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