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Sequence-specific minor groove binding by bis-benzimidazoles: water molecules in ligand recognition

机译:双苯并咪唑的序列特异性小沟结合:配体识别中的水分子

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The binding of two symmetric bis-benzimidazole compounds, 2,2-bis-[4'-(3"-dimethylamino-1"-propyl-oxy)phenyl]-5,5-bi-1H-benzimidazole and its piperidin-propylphenyl analog, to the minor groove of DNA, have been studied by DNA footprinting, surface plasmon resonance (SPR) methods and molecular dynamics simulations in explicit solvent. The foot-printing and SPR methods find that the former compound has enhanced affinity and selectivity for AT sequences in DNA. The molecular modeling studies have suggested that, due to the presence of the oxygen atom in each side chain of the former compound, a water molecule is immobilized and effectively bridges between side chain and DNA base edges via hydrogen bonding interactions. This additional contribution to ligand-DNA interactions would be expected to result in enhanced DNA affinity, as is observed.
机译:两个对称的双联苯并咪唑化合物,2,2-双-[4'-(3“-二甲基氨基-1”-丙基-氧基)苯基] -5,5-bi-1H-苯并咪唑及其哌啶-丙基苯基的结合通过DNA足迹,表面等离振子共振(SPR)方法和显式溶剂中的分子动力学模拟研究了与DNA小沟类似的类似物。足迹和SPR方法发现前一种化合物对DNA中AT序列具有增强的亲和力和选择性。分子模型研究表明,由于在前一种化合物的每个侧链中都存在氧原子,水分子被固定并通过氢键相互作用有效地桥接了侧链和DNA碱基边缘之间。如所观察到的,预期对配体-DNA相互作用的这种额外贡献将导致增强的DNA亲和力。

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