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神经中一种新型微管-神经丝偶联物的超微结构

Ultrastructure of a new microtubule-neurofilament coupler in nerves.

作者信息

Nagele R G, Roisen F J

出版信息

Brain Res. 1982 Dec 16;253(1-2):31-7. doi: 10.1016/0006-8993(82)90670-9.

Abstract

A new structure associated with the surfaces of neuronal microtubules is described which connects microtubules to neurofilaments in the axonal processes of cultured chick sensory ganglia. These couplers consist of a spherical core particle (15 nm in diameter) from which radiate several thin filaments (4 nm in diameter). Connection of adjacent microtubules and neurofilaments is achieved by thin filaments radiating from core particles positioned between these cytoskeletal elements. Couplers are most conspicuous in regions of axonal processes containing widely separated microtubules and neurofilaments. The structure and distribution of these couplers suggests that they are directly involved in intra-axonal organelle movements, possibly by modulating the spatial separation of adjacent microtubules and neurofilaments, thereby allowing the passage of transported organelles.

摘要

本文描述了一种与神经元微管表面相关的新结构,该结构将微管与培养的鸡感觉神经节轴突过程中的神经丝相连。这些连接体由一个球形核心颗粒(直径15纳米)组成,从该颗粒中放射出几根细丝(直径4纳米)。相邻微管和神经丝的连接是通过位于这些细胞骨架元件之间的核心颗粒放射出的细丝实现的。连接体在轴突过程中微管和神经丝广泛分离的区域最为明显。这些连接体的结构和分布表明,它们可能通过调节相邻微管和神经丝的空间间隔,从而使运输的细胞器能够通过,直接参与轴突内细胞器的移动。

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