Pareek S, Notterpek L, Snipes G J, Naef R, Sossin W, Laliberté J, Iacampo S, Suter U, Shooter E M, Murphy R A
Montreal Neurological Institute and the Faculty of Medicine, McGill University, Montreal, Quebec H3A 2B4, Canada.
J Neurosci. 1997 Oct 15;17(20):7754-62. doi: 10.1523/JNEUROSCI.17-20-07754.1997.
Schwann cells express low levels of myelin proteins in the absence of neurons. When Schwann cells and neurons are cultured together the production of myelin proteins is elevated, and myelin is formed. For peripheral myelin protein 22 (PMP22), the exact amount of protein produced is critical, because peripheral neuropathies result from its underexpression or overexpression. In this study we examined the effect of neurons on Schwann cell PMP22 production in culture and in peripheral nerve using metabolic labeling and pulse-chase studies as well as immunocytochemistry. Most of the newly synthesized PMP22 in Schwann cells is rapidly degraded in the endoplasmic reticulum. Only a small proportion of the total PMP22 acquires complex glycosylation and accumulates in the Golgi compartment. This material is translocated to the Schwann cell membrane in detectable amounts only when axonal contact and myelination occur. Myelination does not, however, alter the rapid turnover of PMP22 in Schwann cells. PMP22 may therefore be a unique myelin protein in that axonal contact promotes its insertion into the Schwann cell membrane and myelin without altering its rapid turnover rate within the cell.
在没有神经元的情况下,施万细胞表达低水平的髓磷脂蛋白。当施万细胞和神经元共同培养时,髓磷脂蛋白的产生会增加,并形成髓磷脂。对于外周髓磷脂蛋白22(PMP22),所产生的蛋白的确切数量至关重要,因为外周神经病变是由其表达不足或过度表达导致的。在本研究中,我们使用代谢标记、脉冲追踪研究以及免疫细胞化学方法,研究了神经元对培养物中和外周神经中施万细胞PMP22产生的影响。施万细胞中新合成的大部分PMP22在内质网中迅速降解。仅一小部分总PMP22获得复杂糖基化并积聚在高尔基体区室中。只有当轴突接触和髓鞘形成发生时,这种物质才会以可检测的量转运到施万细胞膜。然而,髓鞘形成并不会改变施万细胞中PMP22的快速周转。因此,PMP22可能是一种独特的髓磷脂蛋白,因为轴突接触促进其插入施万细胞膜和髓鞘中,而不会改变其在细胞内的快速周转速率。