Li C, Tropak M B, Gerlai R, Clapoff S, Abramow-Newerly W, Trapp B, Peterson A, Roder J
Samuel Lunenfeld Research Institute, University of Toronto, Ontario, Canada.
Nature. 1994 Jun 30;369(6483):747-50. doi: 10.1038/369747a0.
The hypothesis that myelin-associated glycoprotein (MAG) initiates myelin formation is based in part on observations that MAG has an adhesive role in interactions between oligodendrocytes and neurons. Furthermore, the over- or underexpression of MAG in transfected Schwann cells in vitro leads to accelerated myelination or hypomyelination, respectively. Here we test this idea by creating a null mutation in the mag locus and deriving mice that are totally deficient in MAG expression at the RNA and protein level. In adult mutant animals the degree of myelination and its compaction are normal, whereas the organization of the periaxonal region is partially impaired. Mutant animals show a subtle intention tremor. Our findings do not support the widely held view that MAG is critical for myelin formation but rather indicate that MAG is necessary for maintenance of the cytoplasmic collar and periaxonal space of myelinated fibres.
髓鞘相关糖蛋白(MAG)启动髓鞘形成的假说部分基于以下观察结果:MAG在少突胶质细胞与神经元之间的相互作用中具有黏附作用。此外,体外转染雪旺细胞中MAG的过表达或低表达分别导致髓鞘形成加速或髓鞘形成不足。在这里,我们通过在mag基因座产生无效突变并获得在RNA和蛋白质水平上完全缺乏MAG表达的小鼠来验证这一想法。在成年突变动物中,髓鞘形成的程度及其紧密程度是正常的,而轴突周围区域的组织受到部分损害。突变动物表现出轻微的意向性震颤。我们的研究结果不支持MAG对髓鞘形成至关重要这一广泛持有的观点,而是表明MAG对于维持有髓纤维的细胞质套和轴突周围空间是必要的。