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Structural insights into the π-π-π stacking mechanism and DNA-binding activity of the YEATS domain

机译:YEATS结构域的π-π-π堆积机理和DNA结合活性的结构见解

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摘要

The YEATS domain has been identified as a reader of histone acylation and more recently emerged as a promising anti-cancer therapeutic target. Here, we detail the structural mechanisms for π-π-π stacking involving the YEATS domains of yeast Taf14 and human AF9 and acylated histone H3 peptides and explore DNA-binding activities of these domains. Taf14-YEATS selects for crotonyllysine, forming π stacking with both the crotonyl amide and the alkene moiety, whereas AF9-YEATS exhibits comparable affinities to saturated and unsaturated acyllysines, engaging them through π stacking with the acyl amide. Importantly, AF9-YEATS is capable of binding to DNA, whereas Taf14-YEATS is not. Using a structure-guided approach, we engineered a mutant of Taf14-YEATS that engages crotonyllysine through the aromatic-aliphatic-aromatic π stacking and shows high selectivity for the crotonyl H3K9 modification. Our findings shed light on the molecular principles underlying recognition of acyllysine marks and reveal a previously unidentified DNA-binding activity of AF9-YEATS.
机译:YEATS结构域已被确定为组蛋白酰化的读者,最近又成为有希望的抗癌治疗靶标。在这里,我们详细介绍涉及酵母Taf14和人AF9的YEATS域以及酰化的组蛋白H3肽的π-π-π堆叠的结构机理,并探讨这些域的DNA结合活性。 Taf14-YEATS选择巴豆酰赖氨酸,与巴豆酰酰胺和烯烃部分同时形成π堆积,而AF9-YEATS与饱和和不饱和酰基赖氨酸具有相似的亲和力,通过与丙烯酰胺的π堆积使它们结合。重要的是,AF9-YEATS能够与DNA结合,而Taf14-YEATS不能。使用结构指导的方法,我们设计了一个Taf14-YEATS突变体,该突变体通过芳香族-脂肪族-芳香族π堆积与巴豆酰赖氨酸结合,并显示出对巴豆酰H3K9修饰的高选择性。我们的发现揭示了识别酰基赖氨酸标记的潜在分子原理,并揭示了AF9-YEATS以前无法确定的DNA结合活性。

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