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嵌入剂和杂交分子对DNA的识别

DNA recognition by intercalators and hybrid molecules.

作者信息

Waring M J, Bailly C

机构信息

University of Cambridge Department of Pharmacology, UK.

出版信息

J Mol Recognit. 1994 Jun;7(2):109-22. doi: 10.1002/jmr.300070208.

Abstract

Experiments are described which probe the role of the 2-amino group of guanine as a critical determinant of the recognition of nucleotide sequences in DNA by specific ligands. Homologous samples of tyrT DNA substituted with inosine or 2,6-diaminopurine residues in place of guanosine or adenine respectively yield characteristically modified footprinting patterns when challenged with sequence-selective antibiotics such as echinomycin, actinomycin or netropsin. The capacity of small molecules to recognise particular DNA sequences is exploited in the 'combilexin' strategy to target small molecules to defined sites in DNA. A composite molecule containing a distamycin moiety linked to an intercalating ellipticine derivative has been synthesised and shown to bind tightly to DNA but without much sequence-selectivity. Refinement of this molecule based on predictions from molecular modelling has led to the synthesis of a second generation derivative bearing an additional positive charge: this new hybrid molecule is strongly selective for binding to AT-rich tracts in DNA.

摘要

本文描述了一些实验,这些实验探究了鸟嘌呤的2-氨基基团作为特定配体识别DNA核苷酸序列的关键决定因素的作用。分别用肌苷或2,6-二氨基嘌呤残基取代鸟苷或腺嘌呤的tyrT DNA同源样品,在用诸如棘霉素、放线菌素或纺锤菌素等序列选择性抗生素处理时,会产生特征性的修饰足迹模式。小分子识别特定DNA序列的能力被用于“组合霉素”策略,将小分子靶向到DNA中的特定位点。已合成了一种包含与嵌入型玫瑰树碱衍生物相连的偏端霉素部分的复合分子,该分子显示出与DNA紧密结合,但没有太多序列选择性。基于分子建模预测对该分子进行优化,已导致合成了带有额外正电荷的第二代衍生物:这种新的杂交分子对结合DNA中富含AT的区域具有很强的选择性。

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