Yin X, Kidd G J, Wrabetz L, Feltri M L, Messing A, Trapp B D
Department of Neurosciences, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.
J Cell Biol. 2000 Mar 6;148(5):1009-20. doi: 10.1083/jcb.148.5.1009.
This report investigated mechanisms responsible for failed Schwann cell myelination in mice that overexpress P(0) (P(0)(tg)), the major structural protein of PNS myelin. Quantitative ultrastructural immunocytochemistry established that P(0) protein was mistargeted to abaxonal, periaxonal, and mesaxon membranes in P(0)(tg) Schwann cells with arrested myelination. The extracellular leaflets of P(0)-containing mesaxon membranes were closely apposed with periodicities of compact myelin. The myelin-associated glycoprotein was appropriately sorted in the Golgi apparatus and targeted to periaxonal membranes. In adult mice, occasional Schwann cells myelinated axons possibly with the aid of endocytic removal of mistargeted P(0). These results indicate that P(0) gene multiplication causes P(0) mistargeting to mesaxon membranes, and through obligate P(0) homophilic adhesion, renders these dynamic membranes inert and halts myelination.
本报告研究了在过度表达外周神经系统髓鞘主要结构蛋白P(0)(P(0)(tg))的小鼠中施万细胞髓鞘形成失败的机制。定量超微结构免疫细胞化学表明,在髓鞘形成停滞的P(0)(tg)施万细胞中,P(0)蛋白被错误靶向至轴突外、轴突周和髓鞘系膜膜。含有P(0)的髓鞘系膜膜的细胞外小叶与致密髓鞘的周期性紧密贴合。髓鞘相关糖蛋白在高尔基体中得到正确分选,并靶向至轴突周膜。在成年小鼠中,偶尔有施万细胞可能借助内吞作用清除错误靶向的P(0)来使轴突形成髓鞘。这些结果表明,P(0)基因倍增导致P(0)错误靶向至髓鞘系膜膜,并通过强制性的P(0)嗜同性黏附,使这些动态膜变得惰性并停止髓鞘形成。