首页> 美国卫生研究院文献>Nucleic Acids Research >Calorimetric and spectroscopic investigation of drug-DNA interactions. I. The binding of netropsin to poly d(AT).
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Calorimetric and spectroscopic investigation of drug-DNA interactions. I. The binding of netropsin to poly d(AT).

机译:药物-DNA相互作用的量热和光谱研究。 I. netropsin与poly d(AT)的结合。

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摘要

We report the first calorimetric investigation of netropsin binding to poly d(AT). Temperature-dependent uv absorption, circular dichroism (CD), batch calorimetry, and differential scanning calorimetry (DSC) were used to detect, monitor, and thermodynamically characterize the binding process. The following results have been obtained: 1) Netropsin groove binding is accompanied by a large exothermic enthalpy of 9.2 kcal/mol of drug bound at 25 degrees C. This indicates that a large negative binding enthalpy may be a necessary but not a sufficient criterion for drug intercalation. We suggest that the exothermic binding might be correlated with specific H-bonding interactions. 2) From the difference in DSC transition enthalpies in the presence and absence of netropsin, we calculate a binding enthalpy of -10.7 kcal/mol of netropsin at 88 degrees C. 3) We calculate a positive delta S for netropsin binding to poly d(AT) at 25 degrees C. This positive entropy change may reflect netropsin-induced release of condensed cations and/or bound water. 4) The netropsin-saturated duplex monophasically melts 46 degrees C higher than the free duplex. The unsaturated duplex melts through two thermally-resolved transitions that correspond to netropsin-free and netropsin-bound regions. These two regions interact dynamically with no substantial influence on the thermal stabilities of the separate domains. 5) Netropsin binding decreases the cooperativity of the duplex to single strand transition.
机译:我们报告了netropsin结合poly d(AT)的首次量热研究。温度相关的uv吸收,圆二色性(CD),间歇量热法和差示扫描量热法(DSC)用于检测,监测和热力学表征结合过程。已获得以下结果:1)Netropsin凹槽结合伴随着在25摄氏度下结合的9.2 kcal / mol药物的大放热焓。这表明,大的负结合焓可能是必要的,但不是充分的标准药物插层。我们建议放热结合可能与特定的H键相互作用。 2)根据存在和不存在netropsin时DSC过渡焓的差异,我们计算出88°C时netropsin的结合焓为-10.7 kcal / mol。3)我们计算出netropsin与poly d结合的正增量δS(在25度C)。这种正熵变化可能反映了Netropsin诱导的冷凝阳离子和/或结合水的释放。 4)Netropsin饱和的双链体比自由双链体单相熔化的温度高46摄氏度。不饱和双链体通过两个热分解的跃迁而熔化,这两个跃迁分别对应于无Netropsin和Netropsin结合的区域。这两个区域动态相互作用,而对各个域的热稳定性没有实质性影响。 5)Netropsin结合降低了双链体向单链过渡的协同作用。

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