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神经结构-功能:电刺激或窒息使轴突膜和缝隙连接中巯基基团暴露,产生异常结构细节。

Nerve Structure-Function: Unusual Structural Details and Unmasking of Sulfhydryl Groups by Electrical Stimulation or Asphyxia in Axon Membranes and Gap Junctions.

机构信息

Department of Pharmacology and Physiology, School of Medicine and Dentistry, University Rochester, Rochester, NY 14642-8711, USA.

出版信息

Int J Mol Sci. 2023 Sep 1;24(17):13565. doi: 10.3390/ijms241713565.

Abstract

This review describes and discusses unusual axonal structural details and evidence for unmasking sulfhydryl groups (-SH) in axoplasmic membranes resulting from electrical stimulation or asphyxia. Crayfish axons contain fenestrated septa (FS) that, in phase contrast, micrographs appear as repeated striations. In the electron microscope, each septum is made of two cross-sectioned membranes containing ~55 nm pores, each occupied by a microtubule. Thin filaments, which we believe are made of kinesin, bridge the microtubule to the edge of the pore. FS are believed to play a role in axoplasmic flow. The axons also display areas in which axon and sheath glial cell plasma membranes are sharply curved and project into the axoplasm. In freeze-fractures, the protoplasmic leaflet (P-face) of the projections appears as elongated indentations containing parallel chains of particles. The sheath glial cell plasma membrane also contains particles, but they are irregularly aggregated. The axons also display areas where axonal and glial plasma membranes fuse, creating intercellular pores. In axons fixed during electrical stimulation, the plasma membrane, the outer membrane of mitochondria, membranes of other cytoplasmic organelles, and gap junctions increase in electron opacity and thickness, resulting from unmasking of sulfhydryl groups (-SH). Similar changes occur in asphyxiated nerve cords.

摘要

这篇综述描述并讨论了电刺激或窒息引起的轴浆膜中不寻常的轴突结构细节和巯基(-SH)暴露的证据。螯虾轴突含有有窗格的隔片(FS),在相差显微镜下,这些隔片呈现出重复的条纹。在电子显微镜下,每个隔片由两个横切的膜组成,其中包含约 55nm 的孔,每个孔都由一个微管占据。我们认为,细纤维是由驱动蛋白组成的,它将微管桥接到孔的边缘。FS 被认为在轴浆流中起作用。轴突还显示出一些区域,其中轴突和鞘胶质细胞的质膜急剧弯曲并突入轴浆。在冷冻断裂中,突起的原生质小叶(P 面)呈现出拉长的凹陷,其中包含平行的粒子链。鞘胶质细胞质膜也含有粒子,但它们是不规则聚集的。轴突还显示出轴突和神经胶质质膜融合的区域,形成细胞间孔。在电刺激过程中固定的轴突中,质膜、线粒体的外膜、其他细胞质细胞器的膜以及缝隙连接的电子密度和厚度增加,这是由于巯基(-SH)的暴露。在窒息的神经索中也会发生类似的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b46/10488147/b55f0b9dda32/ijms-24-13565-g001.jpg

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