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MS-Based Approaches Enable the Structural Characterization of Transcription Factor/DNA Response Element Complex

机译:基于MS的方法可实现转录因子/ DNA反应元件复合物的结构表征

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摘要

The limited information available on the structure of complexes involving transcription factors and cognate DNA response elements represents a major obstacle in the quest to understand their mechanism of action at the molecular level. We implemented a concerted structural proteomics approach, which combined hydrogen-deuterium exchange (HDX), quantitative protein-protein and protein-nucleic acid cross-linking (XL), and homology analysis, to model the structure of the complex between the full-length DNA binding domain (DBD) of Forkhead box protein O4 (FOXO4) and its DNA binding element (DBE). The results confirmed that FOXO4-DBD assumes the characteristic forkhead topology shared by these types of transcription factors, but its binding mode differs significantly from those of other members of the family. The results showed that the binding interaction stabilized regions that were rather flexible and disordered in the unbound form. Surprisingly, the conformational effects were not limited only to the interface between bound components, but extended also to distal regions that may be essential to recruiting additional factors to the transcription machinery. In addition to providing valuable new insights into the binding mechanism, this project provided an excellent evaluation of the merits of structural proteomics approaches in the investigation of systems that are not directly amenable to traditional high-resolution techniques.
机译:关于涉及转录因子和同源DNA反应元件的复合物结构的可用信息有限,这是寻求了解其在分子水平上的作用机理的主要障碍。我们实施了一种协调的结构蛋白质组学方法,该方法结合了氢-氘交换(HDX),定量蛋白质-蛋白质和蛋白质-核酸交联(XL)以及同源性分析,以模拟全长之间的复合物结构叉头盒蛋白O4(FOXO4)的DNA结合域(DBD)及其DNA结合元件(DBE)。结果证实FOXO4-DBD假定这些类型的转录因子共有特征性的叉头形拓扑,但是其结合模式与该家族其他成员的结合模式显着不同。结果表明,结合相互作用使未结合形式的相当灵活且无序的区域稳定。出人意料的是,构象作用不仅限于结合的组分之间的界面,而且还延伸到了远端区域,这对于为转录机制募集额外的因子可能是必不可少的。除了为绑定机制提供有价值的新见解之外,该项目还对结构蛋白质组学方法在研究不直接适用于传统高分辨率技术的系统中的优点进行了出色的评估。

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