Williams Sophie T, Walport Louise J, Hopkinson Richard J, Madden Sarah K, Chowdhury Rasheduzzaman, Schofield Christopher J, Kawamura Akane
a Chemistry Research Laboratory ; Oxford , UK.
Epigenetics. 2014 Dec;9(12):1596-603. doi: 10.4161/15592294.2014.983381.
The JmjC-domain-containing 2-oxoglutarate-dependent oxygenases catalyze protein hydroxylation and N(ϵ)-methyllysine demethylation via hydroxylation. A subgroup of this family, the JmjC lysine demethylases (JmjC KDMs) are involved in histone modifications at multiple sites. There are conflicting reports as to the substrate selectivity of some JmjC oxygenases with respect to KDM activities. In this study, a panel of modified histone H3 peptides was tested for demethylation against 15 human JmjC-domain-containing proteins. The results largely confirmed known N(ϵ)-methyllysine substrates. However, the purified KDM4 catalytic domains showed greater substrate promiscuity than previously reported (i.e., KDM4A was observed to catalyze demethylation at H3K27 as well as H3K9/K36). Crystallographic analyses revealed that the N(ϵ)-methyllysine of an H3K27me3 peptide binds similarly to N(ϵ)-methyllysines of H3K9me3/H3K36me3 with KDM4A. A subgroup of JmjC proteins known to catalyze hydroxylation did not display demethylation activity. Overall, the results reveal that the catalytic domains of the KDM4 enzymes may be less selective than previously identified. They also draw a distinction between the N(ϵ)-methyllysine demethylation and hydroxylation activities within the JmjC subfamily. These results will be of use to those working on functional studies of the JmjC enzymes.
含JmjC结构域的2-氧代戊二酸依赖性加氧酶通过羟基化催化蛋白质羟基化和N(ε)-甲基赖氨酸去甲基化。该家族的一个亚组,即JmjC赖氨酸去甲基化酶(JmjC KDMs)参与多个位点的组蛋白修饰。关于一些JmjC加氧酶对KDM活性的底物选择性存在相互矛盾的报道。在本研究中,测试了一组修饰的组蛋白H3肽对15种含人JmjC结构域的蛋白质的去甲基化作用。结果在很大程度上证实了已知的N(ε)-甲基赖氨酸底物。然而,纯化的KDM4催化结构域显示出比先前报道的更大的底物混杂性(即,观察到KDM4A催化H3K27以及H3K9/K36处的去甲基化)。晶体学分析表明,H3K27me3肽的N(ε)-甲基赖氨酸与KDM4A的H3K9me3/H3K36me3的N(ε)-甲基赖氨酸结合方式相似。已知催化羟基化的JmjC蛋白亚组未显示去甲基化活性。总体而言,结果表明KDM4酶的催化结构域可能比先前确定的选择性更低。它们还区分了JmjC亚家族内的N(ε)-甲基赖氨酸去甲基化和羟基化活性。这些结果将对从事JmjC酶功能研究的人员有用。