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通过模板筛选鉴定检查点激酶1抑制剂

Identification of inhibitors of checkpoint kinase 1 through template screening.

作者信息

Matthews Thomas P, Klair Suki, Burns Samantha, Boxall Kathy, Cherry Michael, Fisher Martin, Westwood Isaac M, Walton Michael I, McHardy Tatiana, Cheung Kwai-Ming J, Van Montfort Rob, Williams David, Aherne G Wynne, Garrett Michelle D, Reader John, Collins Ian

机构信息

Cancer Research UK Centre for Cancer Therapeutics, The Institute of Cancer Research, 15 Cotswold Road, Sutton, Surrey SM2 5NG, UK.

出版信息

J Med Chem. 2009 Aug 13;52(15):4810-9. doi: 10.1021/jm900314j.

Abstract

Checkpoint kinase 1 (CHK1) is an oncology target of significant current interest. Inhibition of CHK1 abrogates DNA damage-induced cell cycle checkpoints and sensitizes p53 deficient cancer cells to genotoxic therapies. Using template screening, a fragment-based approach to small molecule hit generation, we have identified multiple CHK1 inhibitor scaffolds suitable for further optimization. The sequential combination of in silico low molecular weight template selection, a high concentration biochemical assay and hit validation through protein-ligand X-ray crystallography provided 13 template hits from an initial in silico screening library of ca. 15000 compounds. The use of appropriate counter-screening to rule out nonspecific aggregation by test compounds was essential for optimum performance of the high concentration bioassay. One low molecular weight, weakly active purine template hit was progressed by iterative structure-based design to give submicromolar pyrazolopyridines with good ligand efficiency and appropriate CHK1-mediated cellular activity in HT29 colon cancer cells.

摘要

关卡激酶1(CHK1)是目前备受关注的肿瘤学靶点。抑制CHK1可消除DNA损伤诱导的细胞周期关卡,并使p53缺陷型癌细胞对基因毒性疗法敏感。通过模板筛选,一种基于片段的小分子命中物生成方法,我们已鉴定出多个适合进一步优化的CHK1抑制剂支架。计算机辅助低分子量模板选择、高浓度生化测定以及通过蛋白质-配体X射线晶体学进行命中物验证的顺序组合,从约15000种化合物的初始计算机辅助筛选库中提供了13个模板命中物。使用适当的反筛选以排除测试化合物的非特异性聚集对于高浓度生物测定的最佳性能至关重要。通过基于结构的迭代设计,一个低分子量、弱活性的嘌呤模板命中物得到改进,得到了在HT29结肠癌细胞中具有良好配体效率和适当的CHK1介导的细胞活性的亚微摩尔级吡唑并吡啶。

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