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首页> 外文期刊>Journal of Medicinal Chemistry >Structural insights into the ATP binding pocket of the anaplastic lymphoma kinase by site-directed mutagenesis, inhibitor binding analysis, and homology modeling
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Structural insights into the ATP binding pocket of the anaplastic lymphoma kinase by site-directed mutagenesis, inhibitor binding analysis, and homology modeling

机译:通过定点诱变,抑制剂结合分析和同源性建模对间变性淋巴瘤激酶ATP结合口袋的结构洞察

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Anaplastic lymphoma kinase (ALK) is a valid target for anticancer therapy; however, potent ALK inhibitors suitable for clinical use are lacking. Because the majority of described kinase inhibitors bind in the ATP pocket of the kinase domain, we have characterized this pocket in ALK using site-directed mutagenesis, inhibition studies, and molecular modeling. Mutation of the gatekeeper residue, a key structural determinant influencing inhibitor binding, rendered the fusion protein, NPM/ALK, sensitive to inhibition by SKI-606 in the nanomolar range, while PD173955 inhibited the NPM/ALK mutant at micromolar concentrations. In contrast, both wild type and mutant NPM/ALK were insensitive to imatinib. Computer modeling indicated that docking solutions obtained with a homology model representing the intermediate conformation of the ALK kinase domain reflected closely experimental data. The good agreement between experimental and virtual results indicate that the ALK molecular models described here are useful tools for the rational design of ALK selective inhibitors. In addition, 4-phenylamino-quinoline compounds may have potential as templates for ALK inhibitors.
机译:间变性淋巴瘤激酶(ALK)是抗癌治疗的有效靶点;然而,缺乏适用于临床的有效ALK抑制剂。因为大多数描述的激酶抑制剂都结合在激酶结构域的ATP口袋中,所以我们已使用定点诱变,抑制研究和分子模型对ALK中的这个口袋进行了表征。关守残基的突变是影响抑制剂结合的关键结构决定因素,使融合蛋白NPM / ALK对SKI-606的抑制在纳摩尔范围内敏感,而PD173955在微摩尔浓度下抑制NPM / ALK突变体。相反,野生型和突变型NPM / ALK均对伊马替尼不敏感。计算机建模表明,用代表ALK激酶结构域中间构象的同源性模型获得的对接溶液反映了紧密的实验数据。实验结果和虚拟结果之间的良好一致性表明,此处所述的ALK分子模型是合理设计ALK选择性抑制剂的有用工具。另外,4-苯基氨基喹啉化合物可能具有作为ALK抑制剂模板的潜力。

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