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Histone demethylase KDM5A is regulated by its reader domain through a positive-feedback mechanism

机译:组蛋白脱甲基酶KDM5A通过其正反馈机制受其阅读器域调控

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摘要

The retinoblastoma binding protein KDM5A removes methyl marks from lysine 4 of histone H3 (H3K4). Misregulation of KDM5A contributes to the pathogenesis of lung and gastric cancers. In addition to its catalytic jumonji C domain, KDM5A contains three PHD reader domains, commonly recognized as chromatin recruitment modules. It is unknown whether any of these domains in KDM5A have functions beyond recruitment and whether they regulate the catalytic activity of the demethylase. Here using biochemical and nuclear magnetic resonance (NMR)-based structural studies, we show that the PHD1 preferentially recognizes unmethylated H3K4 histone tail, product of KDM5A-mediated demethylation of tri-methylated H3K4 (H3K4me3). Binding of unmodified H3 peptide to the PHD1 stimulates catalytic domain-mediated removal of methyl marks from H3K4me3 peptide and nucleosome substrates. This positive-feedback mechanism—enabled by the functional coupling between a reader and a catalytic domain in KDM5A—suggests a model for the spread of demethylation on chromatin.
机译:视网膜母细胞瘤结合蛋白KDM5A从组蛋白H3(H3K4)的赖氨酸4去除甲基标记。 KDM5A的失调有助于肺癌和胃癌的发病机理。除了其催化的jumonji C结构域之外,KDM5A还包含三个PHD阅读器结构域,通常被认为是染色质募集模块。尚不清楚KDM5A中的任何这些域是否具有除募集外的功能,以及它们是否调节脱甲基酶的催化活性。在这里使用基于生物化学和核磁共振(NMR)的结构研究,我们显示PHD1优先识别未甲基化的H3K4组蛋白尾巴,这是KDM5A介导的三甲基化H3K4(H3K4me3)脱甲基化的产物。未修饰的H3肽与PHD1的结合刺激了H3K4me3肽和核小体底物催化域介导的甲基标记的去除。这种正反馈机制是由阅读器和KDM5A中催化域之间的功能耦合实现的,它为脱甲基在染色质上的扩散提供了一种模型。

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