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A selective jumonji H3K27 demethylase inhibitor modulates the proinflammatory macrophage response

机译:选择性十文字H3K27脱甲基酶抑制剂调制促炎性巨噬细胞反应

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摘要

The jumonji (JMJ) family of histone demethylases are Fe2+- and α-ketoglutarate-dependent oxygenases that are essential components of regulatory transcriptional chromatin complexes. These enzymes demethylate lysine residues in histones in a methylation-state and sequence-specific context. Considerable effort has been devoted to gaining a mechanistic understanding of the roles of histone lysine demethylases in eukaryotic transcription, genome integrity and epigenetic inheritance,,, as well as in development, physiology and disease,. However, because of the absence of any selective inhibitors, the relevance of the demethylase activity of JMJ enzymes in regulating cellular responses remains poorly understood. Here we present a structure-guided small-molecule and chemoproteomics approach to elucidating the functional role of the H3K27me3-specific demethylase subfamily (KDM6 subfamily members JMJD3 and UTX). The liganded structures of human and mouse JMJD3 provide novel insight into the specificity determinants for cofactor, substrate and inhibitor recognition by the KDM6 subfamily of demethylases. We exploited these structural features to generate the first small-molecule catalytic site inhibitor that is selective for the H3K27me3-specific JMJ subfamily. We demonstrate that this inhibitor binds in a novel manner and reduces lipopolysaccharide-induced proinflammatory cytokine production by human primary macrophages, a process that depends on both JMJD3 and UTX. Our results resolve the ambiguity associated with the catalytic function of H3K27-specific JMJs in regulating disease-relevant inflammatory responses and provide encouragement for designing small-molecule inhibitors to allow selective pharmacological intervention across the JMJ family.
机译:组蛋白脱甲基酶的jumonji(JMJ)家族是Fe 2 + -和α-酮戊二酸依赖性加氧酶,它们是调节性转录染色质复合物的重要组成部分。这些酶在甲基化状态和特定序列的上下文中对组蛋白中的赖氨酸残基进行去甲基化处理 。对组蛋白赖氨酸脱甲基酶在真核转录,基因组完整性和表观遗传,以及发育,生理学和疾病中的作用的机理进行了广泛的研究。 / sup>。然而,由于不存在任何选择性抑制剂,对JMJ酶的脱甲基酶活性在调节细胞应答中的相关性仍知之甚少。在这里,我们提出了一种结构指导的小分子和化学蛋白质组学方法,以阐明H3K27me3特异性脱甲基酶亚家族(KDM6亚家族成员JMJD3和UTX)的功能作用 。人和小鼠JMJD3的配体结构为去甲基化酶KDM6亚家族识别辅因子,底物和抑制剂的特异性决定子提供了新颖的见解。我们利用这些结构特征来生成第一个对H3K27me3特异的JMJ亚科具有选择性的小分子催化位点抑制剂。我们证明了这种抑制剂以一种新颖的方式结合,并减少了人原代巨噬细胞对脂多糖诱导的促炎细胞因子的产生,该过程既依赖于JMJD3又依赖于UTX。我们的结果解决了与H3K27特异性JMJ在调节与疾病相关的炎症反应中的催化功能相关的歧义,并为设计小分子抑制剂提供了鼓励,以允许在整个JMJ系列中进行选择性药理干预。

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