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首页> 外文期刊>Journal of Medicinal Chemistry >Multiple and single binding modes of fragment-like kinase inhibitors revealed by molecular modeling, residue type-selective protonation, and nuclear overhauser effects
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Multiple and single binding modes of fragment-like kinase inhibitors revealed by molecular modeling, residue type-selective protonation, and nuclear overhauser effects

机译:分子模型,残基类型选择性质子化和核过载效应揭示了片段样激酶抑制剂的多种和单一结合模式

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摘要

Fragment-like inhibitors of mitogen-activated protein kinase-activated protein kinase 2 (MK2) include 5-hydroxyisoquinoline (IC50 similar to 85 mu M). Modeling studies identified four possible binding modes for this compound. Two-dimensional H-1-H-1 NOESY data obtained with selectively protonated samples of MK2 in complex with 5-hydroxyisoquinoline demonstrated that two of the four predicted binding modes are well populated. A second small isoquinoline was subsequently shown to bind in a single mode. NMR and modeling studies using this general approach are expected to facilitate "scaffold hopping" and structure-guided elaborations of fragment-like kinase inhibitor cores.
机译:促分裂原活化的蛋白激酶活化的蛋白激酶2(MK2)的片段样抑制剂包括5-羟基异喹啉(IC50类似于85μM)。建模研究确定了该化合物的四种可能的结合模式。用与5-羟基异喹啉络合的MK2的选择性质子化样品获得的二维H-1-H-1 NOESY数据表明,四个预测的结合模式中的两个被很好地填充。随后显示第二种小的异喹啉以单一模式结合。使用这种通用方法进行的NMR和建模研究有望促进片段样激酶抑制剂核心的“支架跳跃”和结构引导的修饰。

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