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Premelting base pair opening probability and drug binding constant of a daunomycin-poly d(GCAT).poly d(ATGC) complex.

机译:道诺霉素-聚d(GCAT)。聚d(ATGC)配合物的预熔碱基对开放概率和药物结合常数。

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摘要

We calculate room temperature thermal fluctuational base pair opening probability of a daunomycin-poly d(GCAT).poly d(ATGC) complex. This system is constructed at an atomic level of detail based on x-ray analysis of a crystal structure. The base pair opening probabilities are calculated from a modified self-consistent phonon approach of anharmonic lattice dynamics theory. We find that daunomycin binding substantially enhances the thermal stability of one of the base pairs adjacent the drug because of strong hydrogen bonding between the drug and the base. The possible effect of this enhanced stability on the drug inhibition of DNA transcription and replication is discussed. We also calculate the probability of drug dissociation from the helix based on the selfconsistent calculation of the probability of the disruption of drug-base H-bonds and the unstacking probability of the drug. The calculations can be used to determine the equilibrium drug binding constant which is found to be in good agreement with observations on similar daunomycin-DNA systems.
机译:我们计算了道诺霉素-聚d(GCAT)。聚d(ATGC)复合物的室温热波动碱基对开放概率。基于晶体结构的X射线分析,该系统以原子的详细程度构建。从非调和晶格动力学理论的改进的自洽声子方法计算碱基对的打开概率。我们发现,由于药物与碱之间的强氢键结合,道诺霉素的结合显着增强了与药物相邻的碱基对之一的热稳定性。讨论了这种增强的稳定性对药物抑制DNA转录和复制的可能影响。我们还基于对药物基氢键的破坏概率和药物的解堆积概率的自洽计算,从螺旋计算了药物解离的概率。该计算可用于确定平衡药物结合常数,发现其与相似的道诺霉素-DNA系统的观察结果非常吻合。

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