Dufour Cécilie, Guenou Hind, Kaabeche Karim, Bouvard Daniel, Sanjay Archana, Marie Pierre J
INSERM U606 and University Paris 7, Paris, France.
Bone. 2008 Jun;42(6):1032-9. doi: 10.1016/j.bone.2008.02.009. Epub 2008 Feb 29.
Fibroblast growth factor receptor (FGFR) signaling plays an important role in skeletogenesis. The molecular mechanisms triggered by activated FGFR in bone forming cells are however not fully understood. In this study, we identify a role for phosphatidylinositol 3-kinase (PI3K) signaling in cell apoptosis induced by FGFR2 activation in osteoblasts. We show that FGFR2 activation leads to decrease PI3K protein levels, resulting in attenuation of PI3K signaling in human osteoblasts. Biochemical and molecular analyses revealed that the attenuated PI3K signaling induced by FGFR2 activation is due to increased Cbl-PI3K molecular interaction mediated by the Cbl Y731 residue, which results in increased PI3K ubiquitination and proteasome degradation. Biochemical and immunocytochemical analyses showed that FGFR2 and Cbl interact in raft micro-domains at the plasma membrane. FGFR2 activation increases FGFR2 and Cbl recruitment in micro-domains, resulting in increased molecular interactions. Consistently, functional analyses showed that the attenuation of PI3K/Akt signaling triggered by FGFR2 activation results in increased osteoblast apoptosis. These results identify a functional molecular mechanism by which activated FGFR2 recruits Cbl in raft micro-domains to trigger PI3K ubiquitination and proteasome degradation, and reveal a novel role for PI3K/Akt attenuation in the control of osteoblast survival by FGFR2 signaling.
成纤维细胞生长因子受体(FGFR)信号通路在骨骼发育过程中发挥着重要作用。然而,骨形成细胞中激活的FGFR所触发的分子机制尚未完全明确。在本研究中,我们确定了磷脂酰肌醇3激酶(PI3K)信号通路在FGFR2激活诱导的成骨细胞凋亡中的作用。我们发现FGFR2激活会导致PI3K蛋白水平降低,从而使人类成骨细胞中的PI3K信号通路减弱。生化和分子分析表明,FGFR2激活诱导的PI3K信号通路减弱是由于Cbl Y731残基介导的Cbl-PI3K分子相互作用增加,这导致PI3K泛素化增加和蛋白酶体降解。生化和免疫细胞化学分析表明,FGFR2和Cbl在质膜的脂筏微区相互作用。FGFR2激活增加了微区中FGFR2和Cbl的募集,导致分子相互作用增加。一致地,功能分析表明,FGFR2激活触发的PI3K/Akt信号通路减弱导致成骨细胞凋亡增加。这些结果确定了一种功能性分子机制,即激活的FGFR2在脂筏微区募集Cbl以触发PI3K泛素化和蛋白酶体降解,并揭示了PI3K/Akt信号减弱在FGFR2信号通路控制成骨细胞存活中的新作用。