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Selective class IIa histone deacetylase inhibition via a nonchelating zinc-binding group

机译:通过非螯合锌结合基团选择性抑制IIa类组蛋白脱乙酰酶

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In contrast to studies on class I histone deacetylase (HDAC) inhibitors, the elucidation of the molecular mechanisms and therapeutic potential of class IIa HDACs (HDAC4, HDAC5, HDAC7 and HDAC9) is impaired by the lack of potent and selective chemical probes. Here we report the discovery of inhibitors that fill this void with an unprecedented metal-binding group, trifluoromethyloxadiazole (TFMO), which circumvents the selectivity and pharmacologic liabilities of hydroxamates. We confirm direct metal binding of the TFMO through crystallographic approaches and use chemoproteomics to demonstrate the superior selectivity of the TFMO series relative to a hydroxamate-substituted analog. We further apply these tool compounds to reveal gene regulation dependent on the catalytic active site of class IIa HDACs. The discovery of these inhibitors challenges the design process for targeting metalloenzymes through a chelating metal-binding group and suggests therapeutic potential for class IIa HDAC enzyme blockers distinct in mechanism and application compared to current HDAC inhibitors.
机译:与关于I类组蛋白脱乙酰基酶(HDAC)抑制剂的研究相反,缺乏有效的和选择性的化学探针会削弱IIa类HDAC(HDAC4,HDAC5,HDAC7和HDAC9)的分子机制和治疗潜力的阐明。在这里,我们报告发现了一种抑制剂,该抑制剂用空前的金属结合基团三氟甲基恶二唑(TFMO)填补了这一空白,从而避免了异羟肟酸酯的选择性和药理作用。我们通过晶体学方法证实了TFMO的直接金属结合,并使用化学蛋白质组学来证明TFMO系列相对于异羟肟酸酯取代的类似物具有优越的选择性。我们进一步应用这些工具化合物来揭示依赖IIa类HDAC催化活性位点的基因调控。这些抑制剂的发现对通过螯合金属结合基团靶向金属酶的设计过程提出了挑战,并暗示了与目前的HDAC抑制剂相比,IIa类HDAC酶阻断剂在机制和应用方面均具有治疗潜力。

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