Cullen M J, Peterson R G, Webster H D
Anat Rec. 1983 Dec;207(4):563-71. doi: 10.1002/ar.1092070405.
Sciatic nerves from young mice were incubated for 2-8 hours in 0.5% Triton X-100 in 0.5 M ammonium acetate, a solution which solubilizes the large and small basic proteins of the myelin sheath. As previously noted (Peterson and Gruener, 1978), myelin sheaths from treated nerves extensively split and unravelled along major dense lines. Small focal areas of compact myelin remained. In freeze-fracture replicas, areas of myelin with lamellar splitting contained few intramembranous particles, while membrane areas with greater than normal densities of particles were associated with the patches of compact myelin membrane. Fixation for as short a time as 15 minutes stabilized the myelin membrane enough to prevent the Triton X-100 effects, even when incubations were extended to 20 hours. Controls, both untreated and 0.5 M ammonium acetate-treated nerves, had predominantly compact myelin sheaths; their leaflets were covered with numerous intramembranous particles. The data suggest that Triton X-100 alters the compact structure of peripheral nervous system myelin. In areas where lamellae are split and separated, there is a loss of intramembranous particles. It appears that the loss of intramembranous particles is related to the removal of the basic proteins which are located in major dense line regions of compact myelin sheaths.
将幼鼠的坐骨神经在含有0.5% Triton X - 100的0.5 M醋酸铵溶液中孵育2 - 8小时,该溶液可溶解髓鞘的大、小碱性蛋白。如前所述(彼得森和格鲁纳,1978年),经处理的神经的髓鞘沿主要致密线广泛分裂和解开。仍保留小的紧密髓鞘局部区域。在冷冻断裂复制品中,有层状分裂的髓鞘区域含有很少的膜内颗粒,而颗粒密度高于正常的膜区域与紧密髓鞘膜斑块相关。即使孵育时间延长至20小时,固定15分钟也足以稳定髓鞘膜,以防止Triton X - 100的影响。对照组,包括未处理的和经0.5 M醋酸铵处理的神经,主要具有紧密的髓鞘;它们的薄片覆盖有许多膜内颗粒。数据表明,Triton X - 100改变了外周神经系统髓鞘的紧密结构。在薄片分裂和分离的区域,膜内颗粒会丢失。似乎膜内颗粒的丢失与位于紧密髓鞘主要致密线区域的碱性蛋白的去除有关。