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Histone demethylation by a family of JmjC domain-containing proteins

机译:组蛋白含有JmjC域的蛋白质的去甲基化作用

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摘要

Covalent modification of histories has an important role in regulating chromatin dynamics and transcription. Whereas most covalent histone modifications are reversible, until recently it was unknown whether methyl groups could be actively removed from histones. Using a biochemical assay coupled with chromatography, we have purified a novel JmjC domain-containing protein, JHDM1 (JmjC domain-containing histone demethylase 1), that specifically demethylates histone H3 at lysine 36 (H3-K36). In the presence of Fe(Ⅱ) and α-ketoglutarate, JHDM1 demethylates H3-methyl-K36 and generates formaldehyde and succinate. Overexpression of JHDM1 reduced the level of dimethyl-H3-K36 (H3K36me2) in vivo. The demethylase activity of the JmjC domain-containing proteins is conserved, as a JHDM1 homologue in Saccharomyces cerevisiae also has H3-K36 demethylase activity. Thus, we identify the JmjC domain as a novel demethylase signature motif and uncover a protein demethylation mechanism that is conserved from yeast to human.
机译:历史的共价修饰在调节染色质动力学和转录中具有重要作用。尽管大多数共价组蛋白修饰是可逆的,但是直到最近,仍不清楚甲基是否可以从组蛋白中被主动去除。使用生化分析结合色谱法,我们纯化了一种新型的含JmjC域的蛋白JHDM1(含JmjC域的组蛋白脱甲基酶1),该蛋白可在赖氨酸36(H3-K36)上特异性地使组蛋白H3脱甲基。在Fe(Ⅱ)和α-酮戊二酸存在下,JHDM1使H3-甲基-K36脱甲基并生成甲醛和琥珀酸酯。 JHDM1的过表达降低了体内二甲基-H3-K36(H3K36me2)的水平。含有JmjC结构域的蛋白质的脱甲基酶活性得以保留,因为酿酒酵母中的JHDM1同源物也具有H3-K36脱甲基酶活性。因此,我们将JmjC域识别为一种新型的脱甲基酶签名基序,并揭示了从酵母到人保守的蛋白质脱甲基机制。

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