Bugge Katrine, Brakti Inna, Fernandes Catarina B, Dreier Jesper E, Lundsgaard Jeppe E, Olsen Johan G, Skriver Karen, Kragelund Birthe B
REPIN, Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Structural Biology and NMR Laboratory, Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Front Mol Biosci. 2020 Jun 16;7:110. doi: 10.3389/fmolb.2020.00110. eCollection 2020.
Living organisms depend on timely and organized interactions between proteins linked in interactomes of high complexity. The recent increased precision by which protein interactions can be studied, and the enclosure of intrinsic structural disorder, suggest that it is time to zoom out and embrace protein interactions beyond the most central points of physical encounter. The present paper discusses protein-protein interactions in the view of structural disorder with an emphasis on flanking regions and contexts of disorder-based interactions. Context constitutes an overarching concept being of physicochemical, biomolecular, and physiological nature, but it also includes the immediate molecular context of the interaction. For intrinsically disordered proteins, which often function by exploiting short linear motifs, context contributes in highly regulatory and decisive manners and constitute a yet largely unrecognized source of interaction potential in a multitude of biological processes. Through selected examples, this review emphasizes how multivalency, charges and charge clusters, hydrophobic patches, dynamics, energetic frustration, and ensemble redistribution of flanking regions or disordered contexts are emerging as important contributors to allosteric regulation, positive and negative cooperativity, feedback regulation and negative selection in binding. The review emphasizes that understanding context, and in particular the role the molecular disordered context and flanking regions take on in protein interactions, constitute an untapped well of energetic modulation potential, also of relevance to drug discovery and development.
生物体依赖于高复杂性相互作用组中相互连接的蛋白质之间及时且有序的相互作用。最近蛋白质相互作用研究的精度提高,以及内在结构无序性的发现,表明现在是时候放宽视野,关注超越最核心物理接触点的蛋白质相互作用了。本文从结构无序的角度讨论蛋白质 - 蛋白质相互作用,重点关注侧翼区域以及基于无序的相互作用的背景。背景是一个涵盖物理化学、生物分子和生理性质的总体概念,但它也包括相互作用的直接分子背景。对于通常通过利用短线性基序发挥功能的内在无序蛋白质,背景以高度调节性和决定性的方式发挥作用,并在众多生物过程中构成了一个尚未被充分认识的相互作用潜力来源。通过选定的例子,本综述强调了多价性、电荷和电荷簇、疏水斑块、动力学、能量挫折以及侧翼区域或无序背景的整体重新分布如何成为变构调节、正负协同性、反馈调节和结合中的负选择的重要贡献因素。该综述强调,理解背景,特别是分子无序背景和侧翼区域在蛋白质相互作用中所起的作用,构成了一个尚未开发的能量调节潜力源泉,这对于药物发现和开发也具有相关性。