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Generation of a synthetic GlcNAcylated nucleosome reveals regulation of stability by H2A-Thr101 GlcNAcylation

机译:合成的GlcNAcylated核小体的生成揭示了H2A-Thr101 GlcNAcylation对稳定性的调节

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O-GlcNAcylation is a newly discovered histone modification implicated in transcriptional regulation, but no structural information on the physical effect of GlcNAcylation on chromatin exists. Here, we generate synthetic, pure GlcNAcylated histones and nucleosomes and reveal that GlcNAcylation can modulate structure through direct destabilization of H2A/H2B dimers in the nucleosome, thus promoting an 'open' chromatin state. The results suggest that a plausible molecular basis for one role of histone O-GlcNAcylation in epigenetic regulation is to lower the barrier for RNA polymerase passage and hence increase transcription.
机译:O-GlcNAcylation是一个新发现的组蛋白修饰,与转录调控有关,但不存在有关GlcNAcylation对染色质的物理作用的结构信息。在这里,我们生成了合成的纯GlcNAcylated组蛋白和核小体,并揭示了GlcNAcylation可以通过直接破坏核小体中H2A / H2B二聚体的稳定性来调节结构,从而促进“开放”染色质状态。结果表明,组蛋白O-GlcNAcy化在表观遗传调控中的一种作用的合理的分子基础是降低RNA聚合酶通过的障碍并因此增加转录。

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