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Discovery of a series of hydroximic acid derivatives as potent histone deacetylase inhibitors

机译:发现一系列羟肟酸衍生物作为有效的组蛋白脱乙酰基酶抑制剂

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To develop potent histone deacetylase inhibitors as antitumor agents, structural modification was performed. The synthesized molecules were tested by enzymatic inhibition assay and anti-proliferation assay. Several molecules show improved activities in the enzymatic inhibition assay. However, in the MTT assays, all these derived molecules have limited performance compared with SAHA. The IC50 values of molecule ((S)-N-(6-(hydroxyamino)-6-oxohexyl)-4-(3-(2-oxo-1-phenyl-2-((3-(trifluoromethyl) phenyl) amino) ethyl) ureido) benzamide, L8) which has the best enzymatic inhibition activity (with an IC50 value of 11.7nm and 967nm against Hela nucleus extract and HDAC8, respectively) were calculated compared with SAHA. Molecular docking was performed to predict the binding mode of molecule L8 in the active site of HDAC2 and HDAC8. Hydrophobic interaction, chelate binding, electrostatic attraction and H-bond interaction in combination make contribution to the ligand-receptor interactions.
机译:为了开发有效的组蛋白脱乙酰基酶抑制剂作为抗肿瘤剂,进行了结构修饰。合成的分子通过酶抑制测定和抗增殖测定进行测试。几种分子在酶抑制试验中显示出改善的活性。但是,在MTT分析中,与SAHA相比,所有这些衍生分子的性能有限。分子((S)-N-(6-(羟基氨基)-6-氧己基)-4-(3-(2-氧代-1-苯基-2-((3-(三氟甲基)苯基)]氨基计算出与SAHA相比具有最佳酶抑制活性(分别对Hela核提取物和HDAC8的IC50值分别为11.7nm和967nm)的乙基),脲基),苯甲酰胺L8)。进行分子对接以预测分子L8在HDAC2和HDAC8的活性位点的结合模式。疏水相互作用,螯合结合,静电吸引和氢键相互作用共同对配体-受体相互作用作出贡献。

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