Trapp B D, Quarles R H
J Cell Biol. 1982 Mar;92(3):877-82. doi: 10.1083/jcb.92.3.877.
The myelin-associated glycoprotein (MAG) is an integral membrane protein (congruent to 100,000 mol wt) which is a minor component of purified peripheral nervus system (PNS) myelin. In the present study, MAG was localized immunocytochemically in 1-micrometer thick Epon sections of 7-d and adult rat peripheral nerves, and its localization was compared to that of the major structural protein (Po) of PNS myelin. To determine more precisely the localization of MAG, immunostained areas in 1 micrometer sections were traced on electron micrographs of identical areas from adjacently cut thin sections.l MAG was localized in periaxonal membranes. Schmidt-Lantermann incisures, paranodal membranes, and the outer mesaxon of PNS myelin sheaths. Compact regions of PNS myelin did not react with MAG antiserum. The results demonstrate MAG's presence in "'semi-compact" Schwann cell or myelin membranes that have a gap of 12-14 nm between extracellular leaflets and a spacing of 5 nm or more between cytoplasmic leaflets. In compact regions of the myelin sheath which do not contain MAG, the cytoplasmic leaflets are "fused" and form the major dense line, whereas the extracellular leaflets are separated by a 2.0 nm gap appearing as paired minor dense lines. Thus, it is proposed that MAG plays a role in maintaining the periaxonal space, Schmidt-Lantermann incisures, paranodal myelin loops, and outer mesaxon by preventing "complete" compaction of Schwann cell and myelin membranes. The presence of MAG in these locations also suggests that MAG may serve a function in regulating myelination in the PNS.
髓鞘相关糖蛋白(MAG)是一种整合膜蛋白(分子量约为100,000),是纯化的周围神经系统(PNS)髓鞘的次要成分。在本研究中,通过免疫细胞化学方法将MAG定位在7日龄和成年大鼠周围神经1微米厚的环氧树脂切片中,并将其定位与PNS髓鞘的主要结构蛋白(Po)的定位进行比较。为了更精确地确定MAG的定位,在相邻切割的薄切片相同区域的电子显微镜照片上追踪1微米切片中的免疫染色区域。MAG定位于轴突周围膜、施密特-兰特尔切迹、结旁膜和PNS髓鞘的外系膜。PNS髓鞘的致密区域不与MAG抗血清反应。结果表明,MAG存在于“半致密”的施万细胞或髓鞘膜中,这些膜在细胞外小叶之间有12 - 14纳米的间隙,在细胞质小叶之间有5纳米或更大的间距。在不含MAG的髓鞘致密区域,细胞质小叶“融合”形成主要致密线,而细胞外小叶被2.0纳米的间隙隔开,呈现为成对的次要致密线。因此,有人提出MAG通过防止施万细胞和髓鞘膜的“完全”压实,在维持轴突周围间隙、施密特-兰特尔切迹、结旁髓鞘环和外系膜方面发挥作用。MAG在这些位置的存在还表明,MAG可能在调节PNS的髓鞘形成中发挥作用。