de La Bourdonnaye Gabin, Marek Martin, Ghazalova Tereza, Damborsky Jiri, Pachl Petr, Brynda Jiri, Stepankova Veronika, Chaloupkova Radka
Loschmidt Laboratories, Department of Experimental Biology and RECETOX, Faculty of Science, Masaryk University, Brno, Czech Republic.
Enantis Ltd., Biotechnology Incubator INBIT, Brno, Czech Republic.
J Struct Biol X. 2024 Oct 24;10:100112. doi: 10.1016/j.yjsbx.2024.100112. eCollection 2024 Dec.
Fibroblast growth factor 2 (FGF2) is a signaling protein that plays a significant role in tissue development and repair. FGF2 binds to fibroblast growth factor receptors (FGFRs) alongside its co-factor heparin, which protects FGF2 from degradation. The binding between FGF2 and FGFRs induces intracellular signaling pathways such as RAS-MAPK, PI3K-AKT, and STAT. FGF2 has strong potential for application in cell culturing, wound healing, and cosmetics but the potential is severely limited by its low protein stability. The thermostable variant FGF2-STAB was constructed by computer-assisted protein engineering to overcome the natural limitation of FGF2. Previously reported characterization of FGF2-STAB revealed an enhanced ability to induce MAP/ERK signaling while having a lower dependence on heparin when compared with FGF2-wt. Here we report the crystal structure of FGF2-STAB solved at 1.3 Å resolution. Protein stabilization is achieved by newly formed hydrophobic interactions, polar contacts, and one additional hydrogen bond. The overall structure of FGF2-STAB is similar to FGF2-wt and does not reveal information on the experimentally observed lower dependence on heparin. A noticeable difference in flexibility in the receptor binding region can explain the differences in signaling between FGF2-STAB and its wild-type counterpart. Our structural analysis provided molecular insights into the stabilization and unique biological properties of FGF2-STAB.
成纤维细胞生长因子2(FGF2)是一种信号蛋白,在组织发育和修复中发挥着重要作用。FGF2与其辅助因子肝素一起与成纤维细胞生长因子受体(FGFRs)结合,肝素可保护FGF2不被降解。FGF2与FGFRs之间的结合会诱导细胞内信号通路,如RAS-MAPK、PI3K-AKT和STAT。FGF2在细胞培养、伤口愈合和化妆品领域具有很强的应用潜力,但由于其蛋白质稳定性低,这种潜力受到严重限制。热稳定变体FGF2-STAB是通过计算机辅助蛋白质工程构建的,以克服FGF2的天然局限性。先前报道的FGF2-STAB的特性表明,与野生型FGF2相比,它诱导MAP/ERK信号的能力增强,同时对肝素的依赖性较低。在此,我们报告了分辨率为1.3 Å的FGF2-STAB的晶体结构。蛋白质稳定性是通过新形成的疏水相互作用、极性接触和一个额外的氢键实现的。FGF2-STAB的整体结构与野生型FGF2相似,并未揭示实验观察到的对肝素较低依赖性的相关信息。受体结合区域灵活性的显著差异可以解释FGF2-STAB与其野生型对应物之间信号传导的差异。我们的结构分析为FGF2-STAB的稳定性和独特生物学特性提供了分子层面的见解。