Kiselyov Vladislav V, Kochoyan Arthur, Poulsen Flemming M, Bock Elisabeth, Berezin Vladimir
Protein Laboratory, Institute of Molecular Pathology, Copenhagen DK-2200, Denmark.
Protein Sci. 2006 Oct;15(10):2318-22. doi: 10.1110/ps.062206106.
The extracellular part of the fibroblast growth factor (FGF) receptor (FGFR) consists of up to three Ig modules (Ig1-Ig3), in which the Ig2 and Ig3 modules determine affinity and specificity for FGF and heparin. The FGFR isoforms lacking the Ig1 module have higher affinity for FGF and heparin than the triple Ig-module isoforms, suggesting that the Ig1 module is involved in the regulation of the FGFR-ligand interaction. We show here by surface plasmon resonance and NMR analyses that the Ig1 module binds to the Ig2 module, and identify by NMR the binding sites involved in the Ig1-Ig2 interaction. The identified binding site in the Ig2 module was found to be in the area of the FGF-Ig2 and Ig2-heparin contact sites, thus providing direct structural evidence that the Ig1 module functions as a competitive autoinhibitor of the FGFR-ligand interaction. Furthermore, the Ig1 binding site of the Ig2 module overlaps the Ig2-Ig2 contact site. This suggests that the function of the Ig1 module is not only regulation of the FGFR-ligand binding affinity but also prevention of spontaneous FGFR dimerization (through a direct Ig2-Ig2 interaction) in the absence of FGF.
成纤维细胞生长因子(FGF)受体(FGFR)的细胞外部分由多达三个免疫球蛋白(Ig)模块(Ig1 - Ig3)组成,其中Ig2和Ig3模块决定了对FGF和肝素的亲和力及特异性。缺乏Ig1模块的FGFR异构体对FGF和肝素的亲和力高于具有三个Ig模块的异构体,这表明Ig1模块参与FGFR - 配体相互作用的调节。我们通过表面等离子体共振和核磁共振分析表明,Ig1模块与Ig2模块结合,并通过核磁共振确定了参与Ig1 - Ig2相互作用的结合位点。发现Ig2模块中确定的结合位点位于FGF - Ig2和Ig2 - 肝素接触位点区域,从而提供了直接的结构证据,证明Ig1模块作为FGFR - 配体相互作用的竞争性自抑制剂发挥作用。此外,Ig2模块的Ig1结合位点与Ig2 - Ig2接触位点重叠。这表明Ig1模块的功能不仅是调节FGFR - 配体结合亲和力,还包括在没有FGF的情况下防止FGFR自发二聚化(通过直接的Ig2 - Ig2相互作用)。