Koledova Zuzana, Sumbal Jakub, Rabata Anas, de La Bourdonnaye Gabin, Chaloupkova Radka, Hrdlickova Barbara, Damborsky Jiri, Stepankova Veronika
Department of Histology and Embryology, Faculty of Medicine, Masaryk University, Brno, Czechia.
International Clinical Research Center, St. Anne's University Hospital, Brno, Czechia.
Front Cell Dev Biol. 2019 Dec 12;7:331. doi: 10.3389/fcell.2019.00331. eCollection 2019.
Fibroblast growth factor 2 (FGF2) plays important roles in tissue development and repair. Using heparan sulfates (HS)/heparin as a cofactor, FGF2 binds to FGF receptor (FGFR) and induces downstream signaling pathways, such as ERK pathway, that regulate cellular behavior. In most cell lines, FGF2 signaling displays biphasic dose-response profile, reaching maximal response to intermediate concentrations, but weak response to high levels of FGF2. Recent reports demonstrated that the biphasic cellular response results from competition between binding of FGF2 to HS and FGFR that impinge upon ERK signaling dynamics. However, the role of HS/heparin in FGF signaling has been controversial. Several studies suggested that heparin is not required for FGF-FGFR complex formation and that the main role of heparin is to protect FGF from degradation. In this study, we investigated the relationship between FGF2 stability, heparin dependence and ERK signaling dynamics using FGF2 variants with increased thermal stability (FGF2-STABs). FGF2-STABs showed higher efficiency in induction of FGFR-mediated proliferation, lower affinity to heparin and were less dependent on heparin than wild-type FGF2 (FGF2-wt) for induction of FGFR-mediated mitogenic response. Interestingly, in primary mammary fibroblasts, FGF2-wt displayed a sigmoidal dose-response profile, while FGF2-STABs showed a biphasic response. Moreover, at low concentrations, FGF2-STABs induced ERK signaling more potently and displayed a faster dynamics of full ERK activation and higher amplitudes of ERK signaling than FGF2-wt. Our results suggest that FGF2 stability and heparin dependence are important factors in FGF-FGFR signaling complex assembly and ERK signaling dynamics.
成纤维细胞生长因子2(FGF2)在组织发育和修复中发挥着重要作用。FGF2以硫酸乙酰肝素(HS)/肝素作为辅因子,与成纤维细胞生长因子受体(FGFR)结合并诱导下游信号通路,如调节细胞行为的ERK通路。在大多数细胞系中,FGF2信号呈现双相剂量反应曲线,对中等浓度达到最大反应,但对高水平的FGF2反应较弱。最近的报道表明,这种双相细胞反应是由于FGF2与HS和FGFR的结合之间的竞争导致的,这种竞争影响了ERK信号动力学。然而,HS/肝素在FGF信号传导中的作用一直存在争议。几项研究表明,肝素对于FGF-FGFR复合物的形成不是必需的,肝素的主要作用是保护FGF不被降解。在本研究中,我们使用热稳定性增加的FGF2变体(FGF2-STABs)研究了FGF2稳定性、肝素依赖性和ERK信号动力学之间的关系。FGF2-STABs在诱导FGFR介导的增殖方面表现出更高的效率,对肝素的亲和力较低,并且在诱导FGFR介导的促有丝分裂反应方面比野生型FGF2(FGF2-wt)对肝素的依赖性更小。有趣的是,在原代乳腺成纤维细胞中,FGF2-wt呈现S形剂量反应曲线,而FGF2-STABs显示双相反应。此外,在低浓度下,FGF2-STABs比FGF2-wt更有效地诱导ERK信号,并且显示出更快的完全ERK激活动力学和更高的ERK信号幅度。我们的结果表明,FGF2稳定性和肝素依赖性是FGF-FGFR信号复合物组装和ERK信号动力学的重要因素。