Genome-Targeted Drug Design: Understanding the Netropsin-DNA Interaction.

Ya-Yin Fang, Vernon R Morris, Guy M Lingani, Eric C Long, William M Southerland
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Abstract

Knowledge of the sequence of the human genome has provided significant opportunities to exploit DNA as a target in the rational design of therapeutic agents. Among agents that target DNA, netropsin exhibits a strong preference for binding A/T rich regions. In order to investigate the key factors responsible for DNA recognition and binding by netropsin, molecular dynamics simulations were carried out on a DNA-netropsin complex in which two netropsin molecules are bound to each AATT site of the 16-mer d(CTTAATTCGAATTAAG)(2). In this complex, the two netropsins are bound to the DNA minor groove in a head-to-head orientation with the guanidinium-termini of both netropsins pointed toward the center of the DNA. Despite their identical environments, molecular dynamics simulations showed that the two netropsins exhibited differences in their respective RMS behaviors, binding energies, minor groove width fluctuations, and rotations of their structural planes. These observations suggest that DNA recognition and binding by small molecules may be governed by mechanism(s) that are much more complex than initially anticipated and may represent unexpected challenges in genome-targeted drug design.

Abstract Image

Abstract Image

Abstract Image

基因组靶向药物设计:了解嗜糖蛋白- dna相互作用。
人类基因组序列的知识为利用DNA作为合理设计治疗剂的目标提供了重要的机会。在靶向DNA的药物中,嗜netropsin表现出强烈的结合a /T丰富区域的偏好。为了研究嗜netropsin对DNA识别和结合的关键因素,对DNA-嗜netropsin复合物进行了分子动力学模拟,其中两个嗜netropsin分子分别结合到16-mer的每个AATT位点(CTTAATTCGAATTAAG)(2)。在这个复合体中,两种netropsin以头对头的方向与DNA小槽结合,两种netropsin的胍末端指向DNA的中心。尽管它们的环境相同,分子动力学模拟表明,两种netropsin在各自的均方根行为、结合能、小凹槽宽度波动和结构面旋转方面存在差异。这些观察结果表明,DNA识别和小分子结合可能受到比最初预期复杂得多的机制的控制,并可能在基因组靶向药物设计中带来意想不到的挑战。
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