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Probing the Relationship between Anti-Pneumocystis carinii Activity and DNA Binding of Bisamidines by Molecular Dynamics Simulations

机译:通过分子动力学模拟探讨卡耐肺孢子虫活性与双s啶的DNA结合之间的关系

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The anti-Pneumocystis carinii activity of 13 synthetic pentamidine analogs was analyzed. The experimental differences in melting points of DNA dodecamer 5'-(CGCGAATTCGCG)(2)-3' complexes (T-m), and in the biological activity measured using ATP bioluminescence assay (IC50) together with the theoretical free energy of DNA-ligand binding estimated by the proposed computational protocol, showed that the experimental activity of the tested pentamidines appeared to be due to the binding to the DNA minor groove with extended AT sequences. The effect of heteroatoms in the aliphatic linker, and the sulfonamide or methoxy substituents on the compound inducing changes in the interactions with the DNA minor groove was examined and was correlated with biological activity. In computational analysis, the explicit solvent approximation with the discrete water molecules was taken into account, and the role of water molecules in the DNA-ligand complexes was defined.
机译:分析了13种合成喷他idine类似物的抗卡氏肺孢子虫活性。 DNA十二聚体5'-(CGCGAATTCGCG)(2)-3'配合物(Tm)的熔点以及使用ATP生物发光测定法(IC50)测得的生物活性以及DNA-配体结合的理论自由能的实验差异拟议的计算方案的估计值表明,被测喷他idine的实验活性似乎是由于与具有扩展AT序列的DNA小沟结合所致。研究了脂族接头中杂原子以及磺酰胺或甲氧基取代基对化合物诱导与DNA小沟相互作用的变化的影响,并将其与生物活性相关联。在计算分析中,考虑了与离散水分子的显式溶剂近似,并定义了水分子在DNA-配体复合物中的作用。

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