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Experimental and Theoretical Evaluation of the EthynylMoiety as a Halogen Bioisostere

机译:乙炔基的实验和理论评价卤素卤素生物等排体

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摘要

Bioisosteric replacements are widely used in medicinal chemistry to improve physicochemical and ADME properties of molecules while retaining or improving affinity. Here, using the p53 cancer mutant Y220C as a test case, we investigate both computationally and experimentally whether an ethynyl moiety is a suitable bioisostere to replace iodine in ligands that form halogen bonds with the protein backbone. This bioisosteric transformation is synthetically feasible via Sonogashira cross-coupling. In our test case of a particularly strong halogen bond, replacement of the iodine with an ethynyl group resulted in a 13-fold affinity loss. High-resolution crystal structures of the two analogues in complex with the p53-Y220C mutant enabled us to correlate the different affinities with particular features of the binding site and subtle changes in ligand binding mode. In addition, using QM calculations and analyzing the PDB, we provide general guidelines for identifying cases where such a transformation is likely to improve ligand recognition.
机译:生物甾体替代物广泛用于药物化学中,以改善分子的物理化学和ADME特性,同时保留或改善亲和力。在这里,使用p53癌症突变体Y220C作为测试案例,我们在计算和实验上都研究了乙炔基部分是否是合适的生物等排体,以取代与蛋白质骨架形成卤素键的配体中的碘。通过Sonogashira交叉偶联,这种生物立体转换在合成上是可行的。在我们的卤素键特别强的测试案例中,用乙炔基取代碘导致亲和力损失13倍。与p53-Y220C突变体复合的两个类似物的高分辨率晶体结构使我们能够将不同的亲和力与结合位点的特定特征和配体结合模式的细微变化相关联。此外,通过使用QM计算和分析PDB,我们提供了确定此类转化可能会改善配体识别性的一般准则。

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