van Drogen-Petit Audrey, Zwahlen Catherine, Peter Matthias, Bonvin Alexandre M J J
Institute of Chemistry, Swiss Federal Institut of Technology Lausanne (EPFL), Switzerland.
J Mol Biol. 2004 Mar 5;336(5):1195-210. doi: 10.1016/j.jmb.2003.12.062.
Specific protein-protein interactions play crucial roles in the regulation of any biological process. Recently, a new protein-protein interaction domain termed PB1 (Phox and Bem1) was identified, which is conserved throughout evolution and present in diverse proteins functioning in signal transduction, cell polarity and survival. Here, we investigated the structure and molecular interactions of the PB1 heterodimer complex composed of the PB1 domains of the yeast proteins Bem1 and Cdc24. A structural model of the Cdc24 PB1 was built by homology modeling and molecular dynamics simulations, and experimentally validated by 15N nuclear Overhauser effect spectroscopy (NOESY)-heteronuclear single quantum coherence (HSQC) analysis. Residues at the interface of the complex for both proteins were identified by NMR titration experiments. A model of the heterodimer was obtained by docking of the two PB1 domains with HADDOCK, which applies ambiguous interaction restraints on residues at the interface to drive the docking procedure. The refined model was validated by site-directed mutagenesis on both Bem1 and Cdc24. Finally, the docking was repeated from the newly published NMR structure of Cdc24, allowing us to assess the performance of homology-based docking. Our results provide insight into the molecular structure of the Bem1-Cdc24 PB1-mediated heterodimer, which allowed identification of critical residues at the binding interface.
特定的蛋白质-蛋白质相互作用在任何生物过程的调控中都起着关键作用。最近,一种名为PB1(Phox和Bem1)的新型蛋白质-蛋白质相互作用结构域被鉴定出来,它在进化过程中保守存在,并且存在于参与信号转导、细胞极性和存活的多种蛋白质中。在此,我们研究了由酵母蛋白Bem1和Cdc24的PB1结构域组成的PB1异源二聚体复合物的结构和分子相互作用。通过同源建模和分子动力学模拟构建了Cdc24 PB1的结构模型,并通过15N核Overhauser效应光谱(NOESY)-异核单量子相干(HSQC)分析进行了实验验证。通过NMR滴定实验确定了两种蛋白质复合物界面处的残基。通过将两个PB1结构域与HADDOCK对接获得了异源二聚体模型,HADDOCK对界面处的残基施加模糊相互作用限制以驱动对接过程。通过对Bem1和Cdc24进行定点诱变验证了优化后的模型。最后,根据新发表的Cdc24的NMR结构重复对接,使我们能够评估基于同源性对接的性能。我们的结果为Bem1-Cdc24 PB1介导的异源二聚体的分子结构提供了见解,从而能够鉴定结合界面处的关键残基。