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Mutations in the intellectual disability gene KDM5C reduce protein stability and demethylase activity

机译:智障基因KDM5C中的突变会降低蛋白质稳定性和脱甲基酶活性

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摘要

Mutations in KDM5C are an important cause of X-linked intellectual disability in males. KDM5C encodes a histone demethylase, suggesting that alterations in chromatin landscape may contribute to disease. We used primary patient cells and biochemical approaches to investigate the effects of patient mutations on KDM5C expression, stability and catalytic activity. We report and characterize a novel nonsense mutation, c.3223delG (p.V1075Yfs*2), which leads to loss of KDM5C protein. We also characterize two KDM5C missense mutations, c.1439C > T (p.P480L) and c.1204G > T (p.D402Y) that are compatible with protein production, but compromise stability and enzymatic activity. Finally, we demonstrate that a c.2T > C mutation in the translation initiation codon of KDM5C results in translation re-start and production of a N-terminally truncated protein (p.M1_E165del) that is unstable and lacks detectable demethylase activity. Patient fibroblasts do not show global changes in histone methylation but we identify several up-regulated genes, suggesting local changes in chromatin conformation and gene expression. This thorough examination of KDM5C patient mutations demonstrates the utility of examining the molecular consequences of patient mutations on several levels, ranging from enzyme production to catalytic activity, when assessing the functional outcomes of intellectual disability mutations.
机译:KDM5C中的突变是男性X连锁智力障碍的重要原因。 KDM5C编码组蛋白脱甲基酶,表明染色质景观的改变可能导致疾病。我们使用主要的患者细胞和生化方法来研究患者突变对KDM5C表达,稳定性和催化活性的影响。我们报告并描述了一个新的无意义突变,c.3223delG(p.V1075Yfs * 2),它导致KDM5C蛋白的丢失。我们还表征了两个KDM5C错义突变,即c.1439C> T(p.P480L)和c.1204G> T(p.D402Y),它们与蛋白质生产兼容,但会损害稳定性和酶活性。最后,我们证明KDM5C的翻译起始密码子中的c.2T> C突变导致翻译重新开始和N末端截短蛋白(p.M1_E165del)的产生,该蛋白不稳定且缺乏可检测的脱甲基酶活性。患者的成纤维细胞未显示出组蛋白甲基化的整体变化,但我们鉴定了几个上调的基因,提示染色质构象和基因表达发生局部变化。对KDM5C患者突变的这种彻底检查表明,在评估智力障碍突变的功能结果时,可以从酶的产生到催化活性的多个水平检查患者突变的分子后果,这一点非常有用。

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