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药物与DNA结合模式的热力学特征。

A thermodynamic signature for drug-DNA binding mode.

作者信息

Chaires Jonathan B

机构信息

James Graham Brown Cancer Center, University of Louisville, 529 S. Jackson Street, Louisville, KY 40202, USA.

出版信息

Arch Biochem Biophys. 2006 Sep 1;453(1):26-31. doi: 10.1016/j.abb.2006.03.027. Epub 2006 Apr 19.

Abstract

A number of small molecules bind directly and selectively to DNA, acting as chemotherapeutic agents by inhibiting replication, transcription or topoisomerase activity. Two common binding modes for these small molecules are intercalation or groove-binding. Intercalation results from insertion of a planar aromatic substituent between DNA base pairs, with concomitant unwinding and lengthening of the DNA helix. Groove binding, in contrast, does not perturb the duplex structure to any great extent. Groove-binders are typically crescent-shaped, and fit snugly into the minor groove with little distortion of the DNA structure. Recent calorimetric studies have determined the enthalpic and entropic contributions to the DNA binding of representative DNA binding compounds. Analysis of such thermodynamic data culled from the literature reveals distinctive thermodynamic signatures for groove-binding and intercalating compounds. Plots of the binding enthalpy (DeltaH) against binding entropy (-TDeltaS) for 26 drug-DNA interactions reveal that groove-binding interactions are clustered in a region of the graph with favorable entropy contributions to the free energy, while intercalators are clustered in a region with unfavorable entropy but favorable enthalpy contributions. Groove-binding is predominantly entropically driven, while intercalation in enthalpically driven. The molecular basis of the contrasting thermodynamic signatures for the two binding modes is by no means clear, but the pattern should be of use in categorizing new DNA binding agents.

摘要

许多小分子直接且选择性地与DNA结合,通过抑制复制、转录或拓扑异构酶活性来充当化疗药物。这些小分子的两种常见结合模式是嵌入或沟槽结合。嵌入是由于平面芳香族取代基插入DNA碱基对之间,同时DNA螺旋解旋并延长。相比之下,沟槽结合在很大程度上不会干扰双链结构。沟槽结合剂通常呈月牙形,能紧密地嵌入小沟,对DNA结构的扭曲很小。最近的量热研究已经确定了代表性DNA结合化合物与DNA结合时的焓和熵贡献。对从文献中收集的此类热力学数据的分析揭示了沟槽结合化合物和嵌入化合物独特的热力学特征。26种药物与DNA相互作用的结合焓(ΔH)与结合熵(-TΔS)的关系图显示,沟槽结合相互作用聚集在图中的一个区域,对自由能有有利的熵贡献,而嵌入剂聚集在一个具有不利熵但有利焓贡献的区域。沟槽结合主要由熵驱动,而嵌入由焓驱动。两种结合模式对比鲜明的热力学特征的分子基础尚不清楚,但这种模式应该有助于对新的DNA结合剂进行分类。

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