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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Rational approach to highly potent and selective apoptosis signal-regulating kinase 1 (ASK1) inhibitors
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Rational approach to highly potent and selective apoptosis signal-regulating kinase 1 (ASK1) inhibitors

机译:合理的高效和选择性凋亡信号调节激酶1(ASK1)抑制剂

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Abstract Many diseases are believed to be driven by pathological levels of reactive oxygen species (ROS) and oxidative stress has long been recognized as a driver for inflammatory disorders. Apoptosis signal-regulating kinase 1 (ASK1) has been reported to be activated by intracellular ROS and its inhibition leads to a down regulation of p38-and JNK-dependent signaling. Consequently, ASK1 inhibitors may have the potential to treat clinically important inflammatory pathologies including renal, pulmonary and liver diseases. Analysis of the ASK1 ATP-binding site suggested that Gln756, an amino acid that rarely occurs at the GK+2 position, offered opportunities for achieving kinase selectivity for ASK1 which was applied to the design of a parallel medicinal chemistry library that afforded inhibitors of ASK1 with nanomolar potency and excellent kinome selectivity. A focused optimization strategy utilizing structure-based design resulted in the identification of ASK1 inhibitors with low nanomolar potency in a cellular assay, high selectivity when tested against kinase and broad pharmacology screening panels, and attractive physicochemical properties. The compounds we describe are attractive tool compounds to inform the therapeutic potential of ASK1 inhibition. Graphical abstract Display Omitted Highlights ? A structural analysis of ASK1 found that there is a rare GLN756 at the GK+2 position. ? Docking a library of 14?K amides targeting GLN756 resulted in a promising lead. ? Optimization resulted in compounds with cell potency and kinome selectivity.
机译:摘要据信许多疾病被反应性氧(ROS)的病理水平驱动,并且氧化胁迫长期被认为是炎症障碍的驾驶员。据报道,凋亡信号调节激酶1(ASK1)通过细胞内ROS激活,其抑制导致P38和依赖于JNK依赖性信号传导的下调。因此,Ask1抑制剂可能有可能治疗临床重要的炎症病理,包括肾,肺和肝病。 ASK1 ATP结合位点的分析表明,GLN756,一种很少发生在GK + 2位置的氨基酸,提供了用于实现ASK1的激酶选择性的机会,其应用于所提供的Ask1抑制剂的平行药用化学文库。具有纳米摩尔效力和优异的Kinome选择性。利用基于结构的设计的聚焦优化策略导致在细胞测定中具有低纳摩尔效力的Ask1抑制剂,当对激酶和宽的药理学筛选面板进行高选择性,具有吸引的物理化学性质。我们描述的化合物是有吸引力的工具化合物,以通知Ask1抑制的治疗潜力。图形抽象显示省略了亮点? ASK1的结构分析发现,GK + 2位有一个罕见的GLN756。还是对接14 k的图书馆瞄准GLN756导致有前途的铅。还是优化导致具有细胞效力和Kinome选择性的化合物。

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