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外周神经郎飞结旁结区细胞骨架交叉桥的电子断层扫描分析。

Electron tomographic analysis of cytoskeletal cross-bridges in the paranodal region of the node of Ranvier in peripheral nerves.

作者信息

Perkins Guy A, Sosinsky Gina E, Ghassemzadeh Sassan, Perez Alex, Jones Ying, Ellisman Mark H

机构信息

National Center for Microscopy and Imaging Research, Center for Research in Biological Systems, University of California, San Diego, 9500 Gilman Drive, La jolla, CA 92093-0608, USA.

出版信息

J Struct Biol. 2008 Mar;161(3):469-80. doi: 10.1016/j.jsb.2007.10.005. Epub 2007 Oct 22.

Abstract

The node of Ranvier is a site for ionic conductances along myelinated nerves and governs the saltatory transmission of action potentials. Defects in the cross-bridging and spacing of the cytoskeleton are a prominent pathological feature in diseases of the peripheral nerve. Electron tomography was used to examine cytoskeletal-cytoskeletal, membrane-cytoskeletal, and heterologous cell connections in the paranodal region of the node of Ranvier in peripheral nerves. Focal attachment of cytoskeletal filaments to each other and to the axolemma and paranodal membranes of the Schwann cell via narrow cross-bridges was visualized in both neuronal and glial cytoplasm. A subset of intermediate filaments associates with the cytoplasmic surfaces of supramolecular complexes of transmembrane structures that are presumed to include known and unknown junctional proteins. Mitochondria were linked to both microtubules and neurofilaments in the axoplasm and to neighboring smooth endoplasmic reticulum by narrow cross-bridges. Tubular cisternae in the glial cytoplasm were also linked to the paranodal glial cytoplasmic loop juxtanodal membrane by short cross-bridges. In the extracellular matrix between axon and Schwann cell, junctional bridges formed long cylinders linking the two membranes. Interactions between cytoskeleton, membranes, and extracellular matrix associations in the paranodal region are likely critical not only for scaffolding, but also for intracellular and extracellular communication.

摘要

郎飞结是有髓神经上离子电导的位点,控制动作电位的跳跃式传导。细胞骨架交叉连接和间距的缺陷是周围神经疾病的一个突出病理特征。利用电子断层扫描技术检查周围神经郎飞结节旁区域的细胞骨架-细胞骨架、膜-细胞骨架和异源细胞连接。在神经元和神经胶质细胞质中都可以看到细胞骨架细丝通过狭窄的交叉桥相互连接,并与轴突膜和施万细胞的节旁膜相连。一部分中间丝与跨膜结构超分子复合物的细胞质表面相关联,这些跨膜结构推测包括已知和未知的连接蛋白。线粒体通过狭窄的交叉桥与轴浆中的微管和神经丝以及相邻的滑面内质网相连。神经胶质细胞质中的管状池也通过短交叉桥与节旁神经胶质细胞质环旁膜相连。轴突和施万细胞之间的细胞外基质中,连接桥形成连接两个膜的长圆柱体。节旁区域细胞骨架、膜和细胞外基质之间的相互作用不仅可能对支架作用至关重要,而且对细胞内和细胞外通讯也至关重要。

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