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首页> 外文期刊>Nature Communications >Highly selective inhibition of histone demethylases by de novo macrocyclic peptides
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Highly selective inhibition of histone demethylases by de novo macrocyclic peptides

机译:新型大环肽对组蛋白脱甲基酶的高度选择性抑制

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摘要

The JmjC histone demethylases (KDMs) are linked to tumour cell proliferation and are current cancer targets; however, very few highly selective inhibitors for these are available. Here we report cyclic peptide inhibitors of the KDM4A-C with selectivity over other KDMs/2OG oxygenases, including closely related KDM4D/E isoforms. Crystal structures and biochemical analyses of one of the inhibitors (CP2) with KDM4A reveals that CP2 binds differently to, but competes with, histone substrates in the active site. Substitution of the active site binding arginine of CP2 to N -?-trimethyl-lysine or methylated arginine results in cyclic peptide substrates, indicating that KDM4s may act on non-histone substrates. Targeted modifications to CP2 based on crystallographic and mass spectrometry analyses results in variants with greater proteolytic robustness. Peptide dosing in cells manifests KDM4A target stabilization. Although further development is required to optimize cellular activity, the results reveal the feasibility of highly selective non-metal chelating, substrate-competitive inhibitors of the JmjC KDMs.
机译:JmjC组蛋白脱甲基酶(KDM)与肿瘤细胞的增殖有关,是目前的癌症靶标;然而,针对这些的高选择性抑制剂很少。在这里,我们报告了KDM4A-C的环状肽抑制剂对其他KDMs / 2OG加氧酶(包括紧密相关的KDM4D / E同工型)的选择性。具有KDM4A的一种抑制剂(CP2)的晶体结构和生化分析表明,CP2与活性位点中的组蛋白底物具有不同的结合能力,但与之竞争。 CP2的活性位点结合精氨酸被N-α-三甲基赖氨酸或甲基化的精氨酸取代,形成环肽底物,表明KDM4可能作用于非组蛋白底物。根据晶体学和质谱分析对CP2进行有针对性的修饰,可产生具有更高蛋白水解稳定性的变体。细胞中的肽剂量显示KDM4A靶标稳定。尽管需要进一步开发以优化细胞活性,但结果揭示了JmjC KDM高选择性非金属螯合,底物竞争性抑制剂的可行性。

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