Department of Physical Chemistry, Faculty of Chemistry and Chemical Technology, University of Ljubljana, 1000 Ljubljana, Slovenia;
Department of Synthetic Biology and Immunology, National Institute of Chemistry, SI-1000 Ljubljana, Slovenia.
Proc Natl Acad Sci U S A. 2021 Sep 14;118(37). doi: 10.1073/pnas.2020562118.
Intrinsically disordered proteins (IDPs) interact with globular proteins through a variety of mechanisms, resulting in the structurally heterogeneous ensembles known as fuzzy complexes. While there exists a reasonable comprehension on how IDP sequence determines the unbound IDP ensemble, little is known about what shapes the structural characteristics of IDPs bound to their targets. Using a statistical thermodynamic model, we show that the target-bound ensembles are determined by a simple code that combines the IDP sequence and the distribution of IDP-target interaction hotspots. These two parameters define the conformational space of target-bound IDPs and rationalize the observed structural heterogeneity of fuzzy complexes. The presented model successfully reproduces the dynamical signatures of target-bound IDPs from the NMR relaxation experiments as well as the changes of interaction affinity and the IDP helicity induced by mutations. The model explains how the target-bound IDP ensemble adapts to mutations in order to achieve an optimal balance between conformational freedom and interaction energy. Taken together, the presented sequence-ensemble relationship of fuzzy complexes explains the different manifestations of IDP disorder in folding-upon-binding processes.
无规卷曲蛋白质(IDPs)通过多种机制与球状蛋白质相互作用,形成结构上不均匀的复合物,即模糊复合物。虽然人们已经对 IDP 序列如何决定未结合 IDP 整体有了合理的理解,但对于与靶标结合的 IDP 的结构特征是如何形成的却知之甚少。我们使用统计热力学模型表明,靶标结合的整体是由 IDP 序列和 IDP-靶标相互作用热点分布相结合的简单代码决定的。这两个参数定义了靶标结合的 IDP 的构象空间,并使观察到的模糊复合物的结构异质性合理化。该模型成功地从 NMR 弛豫实验以及突变引起的相互作用亲和力和 IDP 螺旋性变化中再现了靶标结合 IDP 的动力学特征。该模型解释了靶标结合的 IDP 整体如何适应突变,以在构象自由度和相互作用能之间达到最佳平衡。总之,模糊复合物的序列-整体关系解释了 IDP 无序在折叠结合过程中的不同表现。