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动态转录蛋白-蛋白复合物中意想不到的特异性。

Unexpected specificity within dynamic transcriptional protein-protein complexes.

机构信息

Life Sciences Institute, University of Michigan, Ann Arbor, MI 48109.

Program in Chemical Biology, University of Michigan, Ann Arbor, MI 48109.

出版信息

Proc Natl Acad Sci U S A. 2020 Nov 3;117(44):27346-27353. doi: 10.1073/pnas.2013244117. Epub 2020 Oct 19.

Abstract

A key functional event in eukaryotic gene activation is the formation of dynamic protein-protein interaction networks between transcriptional activators and transcriptional coactivators. Seemingly incongruent with the tight regulation of transcription, many biochemical and biophysical studies suggest that activators use nonspecific hydrophobic and/or electrostatic interactions to bind to coactivators, with few if any specific contacts. Here a mechanistic dissection of a set of representative dynamic activator•coactivator complexes, comprised of the ETV/PEA3 family of activators and the coactivator Med25, reveals a different molecular recognition model. The data demonstrate that small sequence variations within an activator family significantly redistribute the conformational ensemble of the complex while not affecting overall affinity, and distal residues within the activator-not often considered as contributing to binding-play a key role in mediating conformational redistribution. The ETV/PEA3•Med25 ensembles are directed by specific contacts between the disordered activator and the Med25 interface, which is facilitated by structural shifts of the coactivator binding surface. Taken together, these data highlight the critical role coactivator plasticity plays in recognition of disordered activators and indicate that molecular recognition models of disordered proteins must consider the ability of the binding partners to mediate specificity.

摘要

真核基因激活中的一个关键功能事件是转录激活因子和转录共激活因子之间形成动态的蛋白质-蛋白质相互作用网络。尽管转录受到严格调控,但许多生化和生物物理研究表明,激活因子利用非特异性疏水和/或静电相互作用与共激活因子结合,几乎没有任何特异性接触。在这里,一组具有代表性的动态激活剂-共激活剂复合物的机制剖析,由 ETV/PEA3 家族的激活因子和共激活因子 Med25 组成,揭示了一个不同的分子识别模型。数据表明,激活因子家族内的小序列变异会显著重新分配复合物的构象整体,而不会影响整体亲和力,并且激活因子内的远端残基——通常不被认为有助于结合——在介导构象重新分配中发挥关键作用。ETV/PEA3·Med25 集合由无规激活因子和 Med25 界面之间的特异性接触指导,这得益于共激活剂结合表面的结构移位。总之,这些数据突出了共激活剂可塑性在识别无规激活因子中的关键作用,并表明无规蛋白质的分子识别模型必须考虑结合伴侣介导特异性的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a6e/7959569/3354a42da845/pnas.2013244117fig01.jpg

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