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柔红霉素与DNA相互作用的热力学表征:一系列DNA宿主双链体完整结合图谱的比较。

Thermodynamic characterization of daunomycin-DNA interactions: comparison of complete binding profiles for a series of DNA host duplexes.

作者信息

Remeta D P, Mudd C P, Berger R L, Breslauer K J

机构信息

Department of Chemistry, Rutgers University, New Brunswick, New Jersey 08903.

出版信息

Biochemistry. 1993 May 18;32(19):5064-73. doi: 10.1021/bi00070a014.

Abstract

Using a combination of spectroscopic and calorimetric techniques, we have determined complete thermodynamic binding profiles (delta G degree, delta H degree, and delta S degree) for the complexation of daunomycin to a series of 10 polymeric DNA duplexes. We find the resulting drug binding data to be sensitive to the base composition and sequence of the host duplex, with the binding free energies ranging from -7.5 to -10.8 kcal/mol of bound drug and the binding enthalpies ranging from +4.11 to -10.76 kcal/mol of bound drug at 25 degrees C. The smaller range in the free energy term reflects the impact of large enthalpy-entropy compensations. We observe that the three synthetic duplexes which exhibit the highest daunomycin binding affinities all contain GC (or IC) base pairs as part of alternating purine/pyrimidine sequence motifs, with these high binding affinities being strongly enthalpy driven at 25 degrees C. Specific comparisons between the binding profiles for daunomycin complexation with select pairs of host duplexes lead to the following observations: (1) The presence or absence of a major-groove methyl group does not alter daunomycin binding thermodynamics. (2) The presence or absence of a minor-groove amino group does alter daunomycin binding thermodynamics. (3) Duplexes with different base compositions but identical minor-groove functionality exhibit similar daunomycin binding thermodynamics. (4) Homopolymeric duplexes composed of either AT or AU base pairs, but not GC base pairs, exhibit large enthalpy-entropy compensations in their daunomycin binding profiles. We propose interpretations of these and other features of our thermodynamic data in terms of specific daunomycin-DNA interactions deduced from available structural data.

摘要

通过结合光谱学和量热技术,我们测定了柔红霉素与一系列10种聚合DNA双链体络合的完整热力学结合曲线(ΔG°、ΔH°和ΔS°)。我们发现,所得的药物结合数据对宿主双链体的碱基组成和序列敏感,在25℃时,结合自由能范围为-7.5至-10.8 kcal/mol结合药物,结合焓范围为+4.11至-10.76 kcal/mol结合药物。自由能项的较小范围反映了大的焓-熵补偿的影响。我们观察到,表现出最高柔红霉素结合亲和力的三种合成双链体均包含GC(或IC)碱基对,作为交替嘌呤/嘧啶序列基序的一部分,这些高结合亲和力在25℃时由焓强烈驱动。柔红霉素与选定的宿主双链体对的结合曲线之间的具体比较得出以下观察结果:(1)大沟甲基的存在与否不会改变柔红霉素结合热力学。(2)小沟氨基的存在与否确实会改变柔红霉素结合热力学。(3)具有不同碱基组成但小沟功能相同的双链体表现出相似的柔红霉素结合热力学。(4)由AT或AU碱基对而非GC碱基对组成的同聚双链体在其柔红霉素结合曲线中表现出大的焓-熵补偿。我们根据从现有结构数据推断出的特定柔红霉素-DNA相互作用,对这些和我们热力学数据的其他特征提出了解释。

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