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中介体亚基MED26 N端结构域的溶液结构及其与EAF1和TAF7相互作用的分子特征

Solution Structure of the N-Terminal Domain of Mediator Subunit MED26 and Molecular Characterization of Its Interaction with EAF1 and TAF7.

作者信息

Lens Zoé, Cantrelle François-Xavier, Peruzzini Riccardo, Hanoulle Xavier, Dewitte Frédérique, Ferreira Elisabeth, Baert Jean-Luc, Monté Didier, Aumercier Marc, Villeret Vincent, Verger Alexis, Landrieu Isabelle

机构信息

UMR8576 Lille University, CNRS, F-59000 Lille, France.

UMR8576 Lille University, CNRS, F-59000 Lille, France.

出版信息

J Mol Biol. 2017 Oct 13;429(20):3043-3055. doi: 10.1016/j.jmb.2017.09.001. Epub 2017 Sep 9.

Abstract

MED26 is a subunit of Mediator, a large complex central to the regulation of gene transcription by RNA Polymerase II. MED26 plays a role in the switch between the initiation and elongation phases of RNA Polymerase II-mediated transcription process. Regulation of these steps requires successive binding of MED26 N-terminal domain (NTD) to TATA-binding protein-associated factor 7 (TAF7) and Eleven-nineteen lysine-rich in leukemia-Associated Factor 1 (EAF1). In order to investigate the mechanism of regulation by MED26, MED26-NTD structure was solved by NMR, revealing a 4-helix bundle. EAF1 (239-268) and TAF7 (205-235) peptide interactions were both mapped to the same groove formed by H3 and H4 helices of MED26-NTD. Both interactions are characterized by dissociation constants in the 10-μM range. Further experiments revealed a folding-upon-binding mechanism that leads to the formation of EAF1 (N247-S260) and TAF7 (L214-S227) helices. Chemical shift perturbations and nuclear Overhauser enhancement contacts support the involvement of residues I222/F223 in anchoring TAF7 helix to a hydrophobic pocket of MED26-NTD, including residues L48, W80 and I84. In addition, Ala mutations of charged residues located in the C-terminal disordered part of TAF7 and EAF1 peptides affected the binding, with a loss of affinity characterized by a 10-time increase of dissociation constants. A structural model of MED26-NTD/TAF7 complex shows bi-partite components, combining ordered and disordered segments, as well as hydrophobic and electrostatic contributions to the binding. This study provides molecular detail that will help to decipher the mechanistic basis for the initiation to elongation switch-function mediated by MED26-NTD.

摘要

MED26是中介体的一个亚基,中介体是一种大型复合物,在RNA聚合酶II对基因转录的调控中起核心作用。MED26在RNA聚合酶II介导的转录过程的起始阶段和延伸阶段之间的转换中发挥作用。对这些步骤的调控需要MED26的N端结构域(NTD)依次与TATA结合蛋白相关因子7(TAF7)和白血病相关因子1中富含11-19赖氨酸的因子(EAF1)结合。为了研究MED26的调控机制,通过核磁共振解析了MED26-NTD的结构,揭示了一个4螺旋束。EAF1(239-268)和TAF7(205-235)肽的相互作用都映射到由MED26-NTD的H3和H4螺旋形成的同一凹槽中。两种相互作用的解离常数均在10μM范围内。进一步的实验揭示了一种结合时折叠的机制,该机制导致EAF1(N端247-丝氨酸260)和TAF7(亮氨酸214-丝氨酸227)螺旋的形成。化学位移扰动和核Overhauser增强接触支持残基异亮氨酸222/苯丙氨酸223参与将TAF7螺旋锚定到MED26-NTD的疏水口袋,包括残基亮氨酸48、色氨酸80和异亮氨酸84。此外,TAF7和EAF1肽C端无序部分中带电残基的丙氨酸突变影响了结合,亲和力的丧失表现为解离常数增加10倍。MED26-NTD/TAF7复合物的结构模型显示了由有序和无序片段组成的两部分组件,以及对结合的疏水和静电贡献。这项研究提供了分子细节,将有助于解读由MED26-NTD介导的从起始到延伸转换功能的机制基础。

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