Selvaraju Raghuram, Bernasconi Lilia, Losberger Christophe, Graber Pierre, Kadi Linda, Avellana-Adalid Virginia, Picard-Riera Nathalie, Baron Van Evercooren Anne, Cirillo Rocco, Kosco-Vilbois Marie, Feger Georg, Papoian Ruben, Boschert Ursula
Department of Immunology, Serono Pharmaceutical Research Institute, Ares-Serono International SA, Geneva, Switzerland.
Mol Cell Neurosci. 2004 Apr;25(4):707-21. doi: 10.1016/j.mcn.2003.12.014.
We have used in vitro oligodendrocyte differentiation and the in vivo remyelination model, the cuprizone model, to identify genes regulating oligodendrocyte function and remyelination. One of the genes we identified, osteopontin (opn), is a secreted glycoprotein with cytokine-like, chemotactic, and anti-apoptotic properties that contains an Arg-Gly-Asp (RGD) cell adhesion motif-mediating interactions with several integrins. Both microglia and astrocytes in demyelinating brain regions of cuprizone-fed mice expressed OPN protein. Recombinant OPN protein produced in a baculovirus expression system induced proliferation of both the rat CG-4 and the mouse Oli-neu oligodendrocyte precursor (OLP)-like cell lines in a dose-dependent manner. In addition, recombinant OPN treatment stimulated both myelin basic protein (MBP) synthesis and myelin sheath formation in mixed cortical cultures from embryonic mouse brain, an in vitro primary culture model of myelination. Interestingly, myelinating mixed cultures prepared from OPN(-/-) mice contained significantly less MBP compared to wild-type cultures after 17 days in culture. We propose that in the central nervous system, OPN may act as a novel regulator of myelination and remyelination.
我们利用体外少突胶质细胞分化和体内髓鞘再生模型——铜螯合剂模型,来鉴定调控少突胶质细胞功能和髓鞘再生的基因。我们鉴定出的其中一个基因——骨桥蛋白(opn),是一种具有细胞因子样、趋化和抗凋亡特性的分泌型糖蛋白,它含有一个精氨酸 - 甘氨酸 - 天冬氨酸(RGD)细胞黏附基序,可介导与多种整合素的相互作用。在喂食铜螯合剂的小鼠脱髓鞘脑区,小胶质细胞和星形胶质细胞均表达OPN蛋白。在杆状病毒表达系统中产生的重组OPN蛋白以剂量依赖的方式诱导大鼠CG - 4和小鼠Oli - neu少突胶质细胞前体(OLP)样细胞系的增殖。此外,重组OPN处理可刺激来自胚胎小鼠脑的混合皮质培养物(一种髓鞘形成的体外原代培养模型)中的髓鞘碱性蛋白(MBP)合成和髓鞘形成。有趣的是,在培养17天后,与野生型培养物相比,由OPN(- / -)小鼠制备的正在进行髓鞘形成的混合培养物中MBP含量显著减少。我们提出,在中枢神经系统中,OPN可能作为髓鞘形成和髓鞘再生的一种新型调节因子发挥作用。