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Activation State-Selective Kinase Inhibitor Assay Based on Ion Mobility-Mass Spectrometry

机译:离子淌度质谱的活化态选择性激酶抑制剂测定

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The discovery of activation state dependent kinase inhibitors, which bind specifically to the inactive conformation of the protein, is considered to be a promising pathway to improved cancer treatments. Identifying such inhibitors is challenging, however, because they can have K_d values similar to molecules known to inhibit kinase function by interacting with the active form. Further, while inhibitor induced changes within the kinase tertiary structure are significant, few technologies are able to correctly assign inhibitor binding modes in a high-throughput fashion based exclusively on protein-inhibitor complex formation and changes in local protein structure. We have developed a new assay, using ion mobility-mass spectrometry, capable of both rapidly detecting inhibitor binding and classifying the resultant kinase binding modes. Here, we demonstrate the ability of our approach to classify a broad set of kinase inhibitors, using micrograms of protein, without the need for protein modification or tagging.
机译:与蛋白质的非活性构象特异性结合的活化状态依赖性激酶抑制剂的发现被认为是改善癌症治疗的有希望的途径。但是,鉴定这类抑制剂具有挑战性,因为它们的K_d值类似于已知通过与活性形式相互作用抑制激酶功能的分子。此外,尽管抑制剂诱导的激酶三级结构变化是显着的,但很少有技术能够仅基于蛋白质抑制剂复合物的形成和局部蛋白质结构的变化以高通量方式正确分配抑制剂结合模式。我们已经开发了一种使用离子迁移质谱的新测定法,该方法能够快速检测抑制剂结合并对所得激酶结合模式进行分类。在这里,我们展示了使用微克级蛋白质对蛋白质进行广泛的激酶抑制剂分类的方法的能力,而无需进行蛋白质修饰或标记。

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