Suppr超能文献

烷基和芳基连接的双(脒基苯并咪唑)及双(脒基吲哚)的结构、DNA小沟结合及碱基对特异性

Structure, DNA minor groove binding, and base pair specificity of alkyl- and aryl-linked bis(amidinobenzimidazoles) and bis(amidinoindoles).

作者信息

Fairley T A, Tidwell R R, Donkor I, Naiman N A, Ohemeng K A, Lombardy R J, Bentley J A, Cory M

机构信息

Division of Organic Chemistry, Burroughs Wellcome Co., Research Triangle Park, North Carolina 27709.

出版信息

J Med Chem. 1993 Jun 11;36(12):1746-53. doi: 10.1021/jm00064a008.

Abstract

A series of bis(amidinobenzimidazoles) and bis(amidinoindoles) with varied linking chains connecting the aromatic groups and various modifications to the basic amidino groups have been prepared. The calf thymus (CT) DNA and nucleic acid homopolymer [poly(dA).poly(dT),poly(dA-dT).poly-(dA-dT), and poly(dG-dC).poly(dG-dC)] binding properties of these compounds have been studied by thermal denaturation (delta Tm) and viscosity. The compounds show a greater affinity for poly(dA).poly(dT) and poly(dA-dT).poly(dA-dT) than for poly(dG-dC).poly(dG-dC). Viscometric titrations indicate that the compounds do not bind by intercalation. Molecular modeling studies and the biophysical data suggest that the molecules bind to the minor groove of CT DNA and homopolymers. Analysis of the shape of the molecules is consistent with this mode of nucleic acid binding. Compounds with an even number of methylenes connecting the benzimidazole rings have a higher affinity for DNA than those with an odd number of methylenes. Molecular modeling calculations that determine the radius of curvature of four defined groups in the molecule show that the shape of the molecule, as a function of chain length, affects the strength of nucleic acid binding. Electronic effects from cationic substituents as well as hydrogen bonding from the imidazole nitrogens also contribute to the nucleic acid affinity. The bis(amidinoindoles) show no structurally associated differential in nucleic acid base pair specificity or affinity.

摘要

已制备出一系列双(脒基苯并咪唑)和双(脒基吲哚),它们具有连接芳族基团的不同连接链以及对基本脒基的各种修饰。通过热变性(ΔTm)和粘度研究了这些化合物与小牛胸腺(CT)DNA和核酸均聚物[聚(dA)·聚(dT)、聚(dA - dT)·聚(dA - dT)和聚(dG - dC)·聚(dG - dC)]的结合特性。这些化合物对聚(dA)·聚(dT)和聚(dA - dT)·聚(dA - dT)的亲和力大于对聚(dG - dC)·聚(dG - dC)的亲和力。粘度滴定表明这些化合物不是通过嵌入结合的。分子建模研究和生物物理数据表明,这些分子与CT DNA和均聚物的小沟结合。对分子形状的分析与此核酸结合模式一致。连接苯并咪唑环的亚甲基数目为偶数的化合物对DNA的亲和力高于亚甲基数目为奇数的化合物。确定分子中四个特定基团曲率半径的分子建模计算表明,分子形状作为链长的函数会影响核酸结合强度。阳离子取代基的电子效应以及咪唑氮的氢键作用也有助于提高核酸亲和力。双(脒基吲哚)在核酸碱基对特异性或亲和力方面没有显示出结构相关的差异。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验