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Structure and Energetics of Ligand–Fluorine Interactions with Galectin‐3 Backbone and Side‐Chain Amides: Insight into Solvation Effects and Multipolar Interactions

机译:配体与氟相互作用与Galectin-3骨架和侧链酰胺的结构和能量学:对溶剂化作用和多极相互作用的认识。

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摘要

Multipolar fluorine–amide interactions with backbone and side‐chain amides have been described as important for protein–ligand interactions and have been used to improve the potency of synthetic inhibitors. In this study, fluorine interactions within a well‐defined binding pocket on galectin‐3 were investigated systematically using phenyltriazolyl‐thiogalactosides fluorinated singly or multiply at various positions on the phenyl ring. X‐ray structures of the C‐terminal domain of galectin‐3 in complex with eight of these ligands revealed potential orthogonal fluorine–amide interactions with backbone amides and one with a side‐chain amide. The two interactions involving main‐chain amides seem to have a strong influence on affinity as determined by fluorescence anisotropy. In contrast, the interaction with the side‐chain amide did not influence affinity. Quantum mechanics calculations were used to analyze the relative contributions of these interactions to the binding energies. No clear correlation could be found between the relative energies of the fluorine–main‐chain amide interactions and the overall binding energy. Instead, dispersion and desolvation effects play a larger role. The results confirm that the contribution of fluorine–amide interactions to protein–ligand interactions cannot simply be predicted, on geometrical considerations alone, but require careful consideration of the energetic components.
机译:多极性氟代酰胺与主链和侧链酰胺的相互作用被认为对蛋白质-配体相互作用很重要,并已被用来提高合成抑制剂的效力。在这项研究中,使用单氟化或在苯环上的多个位置上加成的苯基三唑基-硫代半乳糖苷系统地研究了在Galectin-3上明确定义的结合口袋内的氟相互作用。 galectin-3的C末端结构域的X射线结构与其中的8个配体复合显示出潜在的正交于氟酰胺与骨架酰胺的相互作用以及一个与侧链酰胺的相互作用。由荧光各向异性确定,涉及主链酰胺的两种相互作用似乎对亲和力有很大影响。相反,与侧链酰胺的相互作用不影响亲和力。量子力学计算被用来分析这些相互作用对结合能的相对贡献。氟-主链酰胺相互作用的相对能与总结合能之间没有明显的相关性。相反,分散和去溶剂化作用起更大的作用。结果证实,仅凭几何考虑,不能简单地预测氟-酰胺相互作用对蛋白质-配体相互作用的贡献,而需要仔细考虑能量成分。

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