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未融合三环芳基阳离子与DNA的相互作用:一类新型嵌入剂。

Interaction of unfused tricyclic aromatic cations with DNA: a new class of intercalators.

作者信息

Wilson W D, Tanious F A, Watson R A, Barton H J, Strekowska A, Harden D B, Strekowski L

机构信息

Department of Chemistry, Georgia State University, Atlanta 30303.

出版信息

Biochemistry. 1989 Mar 7;28(5):1984-92. doi: 10.1021/bi00431a005.

DOI:10.1021/bi00431a005
PMID:2719941
Abstract

Unfused tricyclic aromatic ring systems 1-6 with one or two cationic side chains have been synthesized and their interactions with DNA and synthetic polymers probed with a variety of techniques. Molecular mechanics calculations indicate that the torsional angle between ring planes in the minimum energy conformation of the tricyclic molecules can range from 0 degree to as high as 50 degrees depending on the type of rings and substituents. Viscometric titrations with linear and supercoiled DNA, linear dichroism, and NMR studies indicated that all compounds with torsional angles of approximately 20 degrees or less bind to DNA by intercalation. The more highly twisted intercalators caused significant perturbation of DNA structure. Unfused intercalators with twist angles of approximately 20 degrees have reduced binding constants, suggesting that they could not form an optimum interaction with the DNA base pairs. Unfused intercalators with twist less than 20 degrees formed strong complexes with DNA. The structures of these unfused intercalators are more analogous to typical groove-binding molecules, and an analysis of their interaction with DNA provides a better understanding of the subtle differences between intercalation and groove-binding modes for aromatic cations. The results indicate that intercalation and groove-binding modes should be viewed as two potential wells on a continuous energy surface. The results also suggest design strategies for intercalators that can optimally complement DNA base pair propeller twist or that can induce bends in DNA at the intercalation site.

摘要

已合成出带有一个或两个阳离子侧链的未稠合三环芳环体系1-6,并使用多种技术探究了它们与DNA和合成聚合物的相互作用。分子力学计算表明,根据环和取代基的类型,三环分子最低能量构象中环平面之间的扭转角范围可从0度到高达50度。用线性和超螺旋DNA进行的粘度滴定、线性二色性和核磁共振研究表明,所有扭转角约为20度或更小的化合物都通过嵌入作用与DNA结合。扭转程度更高的嵌入剂会对DNA结构造成显著扰动。扭转角约为20度的未稠合嵌入剂的结合常数降低,这表明它们无法与DNA碱基对形成最佳相互作用。扭转角小于20度的未稠合嵌入剂与DNA形成了强复合物。这些未稠合嵌入剂的结构更类似于典型的沟槽结合分子,对它们与DNA相互作用的分析有助于更好地理解芳香族阳离子嵌入和沟槽结合模式之间的细微差异。结果表明,嵌入和沟槽结合模式应被视为连续能量表面上的两个势阱。结果还提出了嵌入剂的设计策略,这些嵌入剂可以最佳地补充DNA碱基对的螺旋桨扭转,或者可以在嵌入位点诱导DNA弯曲。

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Interaction of unfused tricyclic aromatic cations with DNA: a new class of intercalators.未融合三环芳基阳离子与DNA的相互作用:一类新型嵌入剂。
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