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首页> 外文期刊>Angewandte Chemie >Fragment Binding to Kinase Hinge: If Charge Distribution and Local pK(a) Shifts Mislead Popular Bioisosterism Concepts
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Fragment Binding to Kinase Hinge: If Charge Distribution and Local pK(a) Shifts Mislead Popular Bioisosterism Concepts

机译:片段与激酶铰链结合:如果电荷分布和局部pk(a)偏移误导流行的生物学概念

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摘要

Medicinal-chemistry optimization follows strategies replacing functional groups and attaching larger substituents at a promising lead scaffold. Well-established bioisosterism rules are considered, however, it is difficult to estimate whether the introduced modifications really match the required properties at a binding site. The electron density distribution and pK(a) values are modulated influencing protonation states and bioavailability. Considering the adjacent H-bond donor/acceptor pattern of the hinge binding motif in a kinase, we studied by crystallography a set of fragments to map the required interaction pattern. Unexpectedly, benzoic acid and benzamidine, decorated with the correct substituents, are totally bioisosteric just as carboxamide and phenolic OH. A mono-dentate pyridine nitrogen out-performs bi-dentate functionalities. The importance of correctly designing pK(a) values of attached functional groups by additional substituents at the parent scaffold is rendered prominent.
机译:药物化学优化遵循替换官能团和在有希望的铅支架上附加更大取代基的策略。我们考虑了成熟的生物同构规则,然而,很难估计引入的修饰是否真的符合结合位点的要求。电子密度分布和pK(a)值受到调制,影响质子化状态和生物利用度。考虑到激酶中铰链结合基序的相邻H键供体/受体模式,我们通过结晶学研究了一组片段,以绘制所需的相互作用模式。出乎意料的是,苯甲酸和苯甲脒,用正确的取代基修饰,就像羧酰胺和酚羟基一样,是完全生物同构的。单齿吡啶氮的性能优于双齿功能。通过在母体支架上添加取代基,正确设计附加官能团的pK(a)值的重要性变得尤为突出。

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