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聚焦离子束-扫描电子显微镜将病理髓鞘褶皱与缺乏 Plp1 或 Mag 的小鼠轴突变化联系起来。

Focused ion beam-scanning electron microscopy links pathological myelin outfoldings to axonal changes in mice lacking Plp1 or Mag.

机构信息

Department of Neurogenetics, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany.

Electron Microscopy-City Campus, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany.

出版信息

Glia. 2023 Mar;71(3):509-523. doi: 10.1002/glia.24290. Epub 2022 Nov 10.

Abstract

Healthy myelin sheaths consist of multiple compacted membrane layers closely encasing the underlying axon. The ultrastructure of CNS myelin requires specialized structural myelin proteins, including the transmembrane-tetraspan proteolipid protein (PLP) and the Ig-CAM myelin-associated glycoprotein (MAG). To better understand their functional relevance, we asked to what extent the axon/myelin-units display similar morphological changes if PLP or MAG are lacking. We thus used focused ion beam-scanning electron microscopy (FIB-SEM) to re-investigate axon/myelin-units side-by-side in Plp- and Mag-null mutant mice. By three-dimensional reconstruction and morphometric analyses, pathological myelin outfoldings extend up to 10 μm longitudinally along myelinated axons in both models. More than half of all assessed outfoldings emerge from internodal myelin. Unexpectedly, three-dimensional reconstructions demonstrated that both models displayed complex axonal pathology underneath the myelin outfoldings, including axonal sprouting. Axonal anastomosing was additionally observed in Plp-null mutant mice. Importantly, normal-appearing axon/myelin-units displayed significantly increased axonal diameters in both models according to quantitative assessment of electron micrographs. These results imply that healthy CNS myelin sheaths facilitate normal axonal diameters and shape, a function that is impaired when structural myelin proteins PLP or MAG are lacking.

摘要

健康的髓鞘由多个紧密压缩的膜层组成,紧密包裹着下面的轴突。中枢神经系统髓鞘的超微结构需要特殊的结构髓鞘蛋白,包括跨膜四跨膜蛋白(PLP)和 Ig-CAM 髓鞘相关糖蛋白(MAG)。为了更好地了解它们的功能相关性,我们询问了在缺乏 PLP 或 MAG 的情况下,轴突/髓鞘单位会在多大程度上显示出相似的形态变化。因此,我们使用聚焦离子束扫描电子显微镜(FIB-SEM)在 Plp- 和 Mag- 敲除突变小鼠中并排重新研究轴突/髓鞘单位。通过三维重建和形态计量分析,在两种模型中,病理性髓鞘褶皱沿有髓轴突纵向延伸长达 10 μm。超过一半的所有评估的褶皱都来自节间髓鞘。出乎意料的是,三维重建表明,两种模型在髓鞘褶皱下都显示出复杂的轴突病理学,包括轴突发芽。在 Plp- 敲除突变小鼠中还观察到轴突吻合。重要的是,根据电子显微镜照片的定量评估,正常外观的轴突/髓鞘单位在两种模型中均显示出明显增加的轴突直径。这些结果表明,健康的中枢神经系统髓鞘鞘有助于正常的轴突直径和形状,当结构髓鞘蛋白 PLP 或 MAG 缺失时,这种功能就会受损。

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