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Molecular Coupling of Histone Crotonylation and Active Transcription by AF9 YEATS Domain

机译:AF9 YEATS域的组蛋白巴豆酰化和主动转录的分子偶联

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摘要

Recognition of histone covalent modifications by chromatin-binding protein modules ("readers") constitutes a major mechanism for epigenetic regulation, typified by bromodomains that bind acetyllysine. Non-acetyl histone lysine acylations (e.g., crotonylation, butyrylation, propionylation) have been recently identified, but readers that prefer these acylations have not been characterized. Here we report that the AF9 YEATS domain displays selectively higher binding affinity for crotonyllysine over acetyllysine. Structural studies revealed an extended aromatic sandwiching cage with crotonyl specificity arising from pi-aromatic and hydrophobic interactions between crotonyl and aromatic rings. These features are conserved among the YEATS, but not the bromodomains. Using a cell-based model, we showed that AF9 co-localizes with crotonylated histone H3 and positively regulates gene expression in a YEATS domain-dependent manner. Our studies define the evolutionarily conserved YEATS domain as a family of crotonyllysine readers and specifically demonstrate that the YEATS domain of AF9 directly links histone crotonylation to active transcription.
机译:染色质结合蛋白模块(“阅读器”)对组蛋白共价修饰的识别构成表观遗传调控的主要机制,以结合乙酰赖氨酸的溴结构域为代表。最近已经鉴定出非乙酰基组蛋白赖氨酸的酰化作用(例如巴豆酰化,丁酰化,丙酰化),但是没有对偏爱这些酰化作用的读者进行表征。在这里我们报告AF9 YEATS域显示对巴豆酰赖氨酸的选择性更高的结合亲和力超过乙酰赖氨酸。结构研究表明,扩展的芳香族夹心笼具有巴豆酰基特异性,这是由于巴豆酰基与芳环之间的π-芳族和疏水相互作用所致。这些特征在YEATS中是保守的,但在bromodomains中则不是。使用基于细胞的模型,我们显示AF9与巴豆酰化的组蛋白H3共定位,并以YEATS域依赖性方式正向调节基因表达。我们的研究将进化保守的YEATS域定义为巴豆酰赖氨酸阅读器家族,并特别证明AF9的YEATS域直接将组蛋白巴豆酰化与活性转录联系起来。

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