Zavrtanik Uroš, Hadži San, Lah Jurij
Department of Physical Chemistry, Faculty of Chemistry and Chemical Technology, University of Ljubljana, Ljubljana, Slovenia.
Front Mol Biosci. 2021 Aug 31;8:726824. doi: 10.3389/fmolb.2021.726824. eCollection 2021.
Protein interactions mediated by the intrinsically disordered proteins (IDPs) are generally associated with lower affinities compared to those between globular proteins. Here, we characterize the association between the intrinsically disordered HigA2 antitoxin and its globular target HigB2 toxin from using competition ITC experiments. We demonstrate that this interaction reaches one of the highest affinities reported for IDP-target systems ( = 3 pM) and can be entirely attributed to a short, 20-residue-long interaction motif that folds into α-helix upon binding. We perform an experimentally based decomposition of the IDP-target association parameters into folding and binding contributions, which allows a direct comparison of the binding contribution with those from globular ultra-high affinity binders. We find that the HigA2-HigB2 interface is energy optimized to a similar extent as the interfaces of globular ultra-high affinity complexes, such as barnase-barstar. Evaluation of other ultra-high affinity IDP-target systems shows that a strategy based on entropy optimization can also achieve comparably high, picomolar affinities. Taken together, these examples show how IDP-target interactions achieve picomolar affinities either through enthalpy optimization (HigA2-HigB2), resembling the ultra-high affinity binding of globular proteins, or via bound-state fuzziness and entropy optimization (CcdA-CcdB, histone H1-prothymosin α).
与球状蛋白之间的相互作用相比,由内在无序蛋白(IDP)介导的蛋白质相互作用通常具有较低的亲和力。在这里,我们通过竞争等温滴定量热实验来表征内在无序的HigA2抗毒素与其球状靶标HigB2毒素之间的结合。我们证明这种相互作用达到了IDP-靶标系统报道的最高亲和力之一(Kd = 3 pM),并且可以完全归因于一个短的、20个残基长的相互作用基序,该基序在结合时折叠成α螺旋。我们基于实验将IDP-靶标结合参数分解为折叠和结合贡献,这使得能够直接将结合贡献与球状超高亲和力结合剂的贡献进行比较。我们发现HigA2-HigB2界面的能量优化程度与球状超高亲和力复合物(如芽孢杆菌RNA酶-芽孢杆菌RNA酶抑制剂)的界面相似。对其他超高亲和力IDP-靶标系统的评估表明,基于熵优化的策略也可以实现相当高的皮摩尔亲和力。综上所述,这些例子展示了IDP-靶标相互作用如何通过焓优化(HigA2-HigB2)实现皮摩尔亲和力,类似于球状蛋白的超高亲和力结合,或者通过结合态模糊性和熵优化(CcdA-CcdB、组蛋白H1-原胸腺素α)。