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Design and Optimization of Novel Benzimidazole- and Imidazo4,5-bpyridine-Based ATM Kinase Inhibitors with Subnanomolar Activities

机译:亚纳摩尔活性新型苯并咪唑和咪唑并4,5-b吡啶类ATM激酶抑制剂的设计与优化

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摘要

The ATM kinase is a promising target in cancer treatmentas animportant regulator of the cellular response to DNA double-strandbreaks. In this work, we present a new class of specific benzimidazole-basedATM inhibitors with picomolar potency against the isolated enzymeand favorable selectivity within relative PIKK and PI3K kinases. Wecould identify two promising inhibitor subgroups with significantlydifferent physicochemical properties, which we developed simultaneously.These efforts lead to numerous highly active inhibitors with picomolarenzymatic activities. Furthermore, initial low cellular activitieson A549 cells could be increased significantly in numerous examplesresulting in cellular IC50 values in the subnanomolar range.Further characterization of the highly potent inhibitors 90 und 93 revealed promising pharmacokinetic propertiesand strong activities in organoids in combination with etoposide.Additionally, 93 showed no off-target activities withina kinome-representative mini kinase panel, with favorable selectivitieswithin the PIKK- and PI3K-families.
机译:ATM激酶是癌症治疗中一个有前途的靶点,是细胞对DNA双链断裂反应的重要调节因子。在这项工作中,我们提出了一类新的基于苯并咪唑的特异性ATM抑制剂,该抑制剂对分离的酶具有皮摩尔效力,并且在相对PIKK和PI3K激酶中具有良好的选择性。我们可以鉴定出两个具有显着不同物理化学性质的有前途的抑制剂亚群,我们同时开发了它们。这些努力导致了许多具有皮醇酶活性的高活性抑制剂。此外,在许多例子中,A549细胞的初始低细胞活性可以显着增加,导致细胞IC50值在亚纳摩尔范围内。对高效抑制剂 90 和 93 的进一步表征揭示了与依托泊苷联合使用的类器官具有良好的药代动力学特性和强大的活性。此外,93 个在激酶组代表性迷你激酶组合中没有显示出脱靶活性,在 PIKK 和 PI3K 家族中具有良好的选择性。

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