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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Addressing Methionine in Molecular Design through Directed Sulfur-Halogen Bonds
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Addressing Methionine in Molecular Design through Directed Sulfur-Halogen Bonds

机译:通过定向硫-卤素键解决分子设计中的蛋氨酸

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摘要

Halogen bonds are directional interactions involving an electron donor as binding partner. Employing quantum chemical calculations, we explore how they can be used in molecular design to address the sulfur atom in a methionine residue in a previously neglected, directed manner. We characterize energetics and directionality of these halogen bonds and elucidate their spatial variability in suboptimal geometries that are expected to occur in protein-ligand complexes featuring a multitude of concomitant interactions. We derive simple rules allowing medicinal chemists and chemical biologists to easily determine preferred areas of interaction within a binding site and to exploit them for scaffold decoration and design. Our work shows that sulfur-halogen bonds may be used to expand the patentable medicinal chemistry space. We demonstrate their potential to increase binding affinities and suggest that they can significantly contribute to inducing and tuning subtype selectivities.
机译:卤素键是涉及电子供体作为结合配偶体的方向性相互作用。利用量子化学计算,我们探索了如何将其用于分子设计中,从而以一种先前被忽略的,有针对性的方式解决蛋氨酸残基中的硫原子。我们表征这些卤素键的能量学和方向性,并阐明它们的空间变异性,其次佳的几何形状有望在蛋白质-配体复合物中以多种伴随相互作用为特征。我们得出简单的规则,使药用化学家和化学生物学家可以轻松确定结合位点之间相互作用的首选区域,并将其用于脚手架装饰和设计。我们的工作表明,硫-卤素键可用于扩展获得专利的药物化学空间。我们证明了它们增加结合亲和力的潜力,并表明它们可以极大地促进诱导和调节亚型选择性。

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