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首页> 外文期刊>Nature chemical biology >A conserved water-mediated hydrogen bond network defines bosutinib's kinase selectivity
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A conserved water-mediated hydrogen bond network defines bosutinib's kinase selectivity

机译:保守的水介导的氢键网络决定了波舒替尼的激酶选择性

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Kinase inhibitors are important cancer drugs, but they tend to display limited target specificity, and their target profiles are often challenging to rationalize in terms of molecular mechanism. Here we report that the clinical kinase inhibitor bosutinib recognizes its kinase targets by engaging a pair of conserved structured water molecules in the active site and that many other kinase inhibitors share a similar recognition mechanism. Using the nitrile group of bosutinib as an infrared probe, we show that the gatekeeper residue and one other position in the ATP-binding site control access of the drug to the structured water molecules and that the amino acids found at these positions account for the kinome-wide target spectrum of the drug. Our work highlights the importance of structured water molecules for inhibitor recognition, reveals a new role for the kinase gatekeeper and showcases an effective approach for elucidating the molecular origins of selectivity patterns.
机译:激酶抑制剂是重要的抗癌药物,但是它们倾向于表现出有限的靶标特异性,并且其靶标谱通常在分子机制方面难以合理化。在这里,我们报道临床激酶抑制剂波舒替尼通过在活性位点结合一对保守的结构化水分子来识别其激酶靶标,而且许多其他激酶抑制剂也具有相似的识别机制。使用波舒替尼的腈基作为红外探针,我们显示了关守残基和ATP结合位点中的另一个位置控制了药物对结构化水分子的访问,并且在这些位置处发现的氨基酸构成了kinome药物的全靶标谱。我们的工作强调了结构化水分子对于抑制剂识别的重要性,揭示了激酶守卫者的新作用,并展示了阐明选择性模式的分子起源的有效方法。

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