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Design, synthesis, docking, and biological evaluation of novel diazide-containing isoxazole- and pyrazole-based histone deacetylase probes

机译:设计,合成,对接和生物学评估的新型含重氮异恶唑和吡唑的组蛋白脱乙酰基酶探针

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摘要

The design, synthesis, docking, and biological evaluation of novel potent HDAC3 and HDAC8 isoxazole- and pyrazole-based diazide probes suitable for binding ensemble profiling with photoaffinity labeling (BEProFL) experiments in cells is described. Both the isoxazole- and pyrazole-based probes exhibit low nanomolar inhibitory activity against HDAC3 and HDAC8, respectively. The pyrazole-based probe 3f appears to be one of the most active HDAC8 inhibitors reported in the literature with an IC_(50) of 17 nM. Our docking studies suggest that unlike the isoxazole-based ligands the pyrazole-based ligands are flexible enough to occupy the second binding site of HDAC8. Probes/inhibitors 2b, 3a, 3c, and 3f exerted the antiproliferative and neuroprotective activities at micromolar concentrations through inhibition of nuclear HDACs, indicating that they are cell permeable and the presence of an azide or a diazide group does not interfere with the neuroprotection properties, or enhance cellular cytotoxicity, or affect cell permeability.
机译:描述了适用于细胞中光亲和标记(BEProFL)实验的新型高效HDAC3和HDAC8异恶唑和吡唑基重氮叠氮化物探针的设计,合成,对接和生物学评估。基于异恶唑和吡唑的探针分别显示出对HDAC3和HDAC8的低纳摩尔抑制活性。基于吡唑的探针3f似乎是文献中报道的最具活性的HDAC8抑制剂之一,IC_(50)为17 nM。我们的对接研究表明,与基于异恶唑的配体不同,基于吡唑的配体具有足够的柔韧性,足以占据HDAC8的第二个结合位点。探针/抑制剂2b,3a,3c和3f通过抑制核HDAC在微摩尔浓度下发挥抗增殖和神经保护活性,表明它们具有细胞渗透性,并且叠氮化物或二叠氮基团的存在不会干扰神经保护特性,或增强细胞的细胞毒性,或影响细胞的通透性。

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