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Discovery of Potent and Selective Non-Nucleotide Small Molecule Inhibitors of CD73

机译:发现有效和选择性非核苷酸小分子抑制剂的CD73

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CD73 is an extracellular mediator of purinergic signaling. When upregulated in the tumor microenvironment, CD73 has been implicated in the inhibition of immune function through overproduction of adenosine. Traditional efforts to inhibit CD73 have involved antibody therapy or the development of small molecules, the most potent of which mimic the acidic and ionizable structure of the enzyme's natural substrate, adenosine 5'-monophosphate (AMP). Here, we report the systematic discovery of a novel class of non-nucleotide CD73 inhibitors that are more potent than all other nonphosphonate inhibitor classes reported to date. These efforts have culminated in the discovery of 4(-{5-[4-fluoro-1-(2H-indazol-6-yl)-1H-1,2,3-benzotriazol-6-yl]-1H-pyrazol-1-yl}methyl)benzonitrile (73, IC50 = 12 nM) and 4-({5[4-4-chloro-1-(2H-indazol-6-yl)-1H-1,2,3-benzotriazol-6-yl]-1H-pyrazol-1-yl}methyl)benzonitrile (74, IC50 = 19 nM). Cocrystallization of 74 with human CD73 demonstrates a competitive binding mode. These compounds show promise for the improvement of drug-like character via the attenuation of the acidity and low membrane permeability inherent to known nucleoside inhibitors of CD73.
机译:CD73是嘌呤能信号传导的细胞外介质。当在肿瘤微环境上上调时,CD73致力于通过过量生产腺苷的免疫功能。抑制CD73的传统努力涉及抗体治疗或小分子的发展,最有效的是,模拟酶的天然基质的酸性和可电离结构,腺苷5'-单磷酸(AMP)。在这里,我们报告了一种新型非核苷酸CD73抑制剂的系统发现,这些抑制剂比迄今为止报告的所有其他少膦酸抑制剂课程更有效。这些努力在4( - {5- [4-氟-1-(2H- Indazol-6-苯并)-1H-1,2,3-苯并二唑-6-Y1] -1H-吡唑 - 1-基}甲基)苄腈(73,IC50 = 12nm)和4 - ({5 [4-4-氯-1-(2H- Indazol-6-Y1)-1H-1,2,3-苯并三唑 - 6-y1] -1H-吡唑-1-基}甲基)苄腈(74,IC50 = 19nm)。与人CD73的74的共聚化证明了竞争的结合模式。这些化合物显示了通过衰减酸度和已知的核苷抑制剂的酸度和低膜渗透性的耐核苷酸抑制剂的衰减来改善药物状特征。

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