Poliak Sebastian, Peles Elior
Department of Molecular Cell Biology, The Weizmann Institute of Science, Rehovot, Israel.
Nat Rev Neurosci. 2003 Dec;4(12):968-80. doi: 10.1038/nrn1253.
Efficient and rapid propagation of action potentials in myelinated axons depends on the molecular specialization of the nodes of Ranvier. The nodal region is organized into several distinct domains, each of which contains a unique set of ion channels, cell-adhesion molecules and cytoplasmic adaptor proteins. Voltage-gated Na+ channels - which are concentrated at the nodes - are separated from K+ channels - which are clustered at the juxtaparanodal region - by a specialized axoglial contact that is formed between the axon and the myelinating cell at the paranodes. This local differentiation of myelinated axons is tightly regulated by oligodendrocytes and myelinating Schwann cells, and is achieved through complex mechanisms that are used by another specialized cell-cell contact - the synapse.
有髓鞘轴突中动作电位的高效快速传播取决于郎飞结的分子特化。结区被组织成几个不同的结构域,每个结构域都包含一组独特的离子通道、细胞黏附分子和细胞质衔接蛋白。电压门控Na+通道集中在结处,与K+通道(聚集在近结旁区域)被一种特殊的轴突-神经胶质接触分隔开,这种接触在轴突和结旁的髓鞘形成细胞之间形成。有髓鞘轴突的这种局部分化受到少突胶质细胞和髓鞘形成雪旺细胞的严格调控,并通过另一种特殊的细胞间接触——突触所使用的复杂机制来实现。