Applied Neurobiology Group, Institute of Comparative Medicine, University of Glasgow, Bearsden, Glasgow, Scotland, United Kingdom.
Glia. 2009 Dec;57(16):1815-24. doi: 10.1002/glia.20893.
Most axons in the central nervous system (CNS) are surrounded by a multilayered myelin sheath that promotes fast, saltatory conduction of electrical impulses. By insulating the axon, myelin also shields the axoplasm from the extracellular milieu. In the CNS, oligodendrocytes provide support for the long-term maintenance of myelinated axons, independent of the myelin sheath. Here, we use electron microscopy and morphometric analyses to examine the evolution of axonal and oligodendroglial changes in mice deficient in 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) and in mice deficient in both CNP and proteolipid protein (PLP/DM20). We show that CNP is necessary for the formation of a normal inner tongue process of oligodendrocytes that myelinate small diameter axons. We also show that axonal degeneration in Cnp1 null mice is present very early in postnatal life. Importantly, compact myelin formed by transplanted Cnp1 null oligodendrocytes induces the same degenerative changes in shiverer axons that normally are dysmyelinated but structurally intact. Mice deficient in both CNP and PLP develop a more severe axonal phenotype than either single mutant, indicating that the two oligodendroglial proteins serve distinct functions in supporting the myelinated axon. These observations support a model in which the trophic functions of oligodendrocytes serve to offset the physical shielding of axons by myelin membranes.
中枢神经系统(CNS)中的大多数轴突都被多层髓鞘包裹,这促进了电脉冲的快速跳跃传导。髓鞘通过隔离轴突,还将轴浆与细胞外环境隔离开来。在中枢神经系统中,少突胶质细胞为髓鞘化轴突的长期维持提供支持,而与髓鞘无关。在这里,我们使用电子显微镜和形态计量分析来研究缺乏 2',3'-环核苷酸 3'-磷酸二酯酶(CNP)的小鼠和缺乏 CNP 和蛋白脂质蛋白(PLP/DM20)的小鼠中轴突和少突胶质细胞变化的演变。我们表明,CNP 对于形成髓鞘化小直径轴突的正常内舌状过程的少突胶质细胞是必需的。我们还表明,Cnp1 缺失小鼠中的轴突退化在出生后生命的早期就已经存在。重要的是,移植的 Cnp1 缺失少突胶质细胞形成的紧凑髓鞘会诱导正常发育不良但结构完整的颤抖者轴突发生相同的退行性变化。缺乏 CNP 和 PLP 的小鼠比任何一种单突变体都表现出更严重的轴突表型,这表明这两种少突胶质细胞蛋白在支持髓鞘化轴突方面具有不同的功能。这些观察结果支持这样一种模型,即少突胶质细胞的营养功能可以抵消髓鞘膜对轴突的物理屏蔽。