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AF9 YEATS Domain Links Histone Acetylation to DOT1L-Mediated H3K79 Methylation

机译:AF9 YEATS域将组蛋白乙酰化链接到DOT1L介导的H3K79甲基化

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摘要

The recognition of modified histones by ‘‘reader’’ proteins constitutes a key mechanism regulating gene expression in the chromatin context. Compared with the great variety of readers for histone methylation, few protein modules that recognize histone acetylation are known. Here, we show that the AF9 YEATS domain binds strongly to histone H3K9 acetylation and, to a lesser extent, H3K27 and H3K18 acetylation. Crystal structural studies revealed that AF9 YEATS adopts an eight-stranded immunoglobin fold and utilizes a serine-lined aromatic ‘‘sandwiching’’ cage for acetyllysine readout, representing a novel recognition mechanism that is distinct from that of known acetyllysine readers. ChIP-seq experiments revealed a strong colocalization of AF9 and H3K9 acetylation genome-wide, which is important for the chromatin recruitment of the H3K79 methyltransferase DOT1L. Together, our studies identified the evolutionarily conserved YEATS domain as a novel acetyllysinebinding module and established a direct link between histone acetylation and DOT1L-mediated H3K79 methylation in transcription control.
机译:“阅读器”蛋白对修饰的组蛋白的识别构成了在染色质环境中调节基因表达的关键机制。与各种各样的组蛋白甲基化读者相比,很少有人认识到组蛋白乙酰化的蛋白质模块。在这里,我们显示AF9 YEATS域与组蛋白H3K9乙酰化强烈结合,而在较小程度上与H3K27和H3K18乙酰化结合。晶体结构研究表明,AF9 YEATS采用八链免疫球蛋白折叠,并利用丝氨酸内衬的芳香“三明治”笼进行乙酰赖氨酸读出,代表了一种与已知的乙酰赖氨酸读取器不同的新颖识别机制。 ChIP-seq实验揭示了全基因组中AF9和H3K9乙酰化的强烈共定位,这对于H3K79甲基转移酶DOT1L的染色质募集很重要。在一起,我们的研究确定了进化上保守的YEATS域是一种新型的乙酰赖氨酸结合模块,并在转录控制中组蛋白乙酰化与DOT1L介导的H3K79甲基化之间建立了直接联系。

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