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神经丝基因表达:轴突直径的主要决定因素。

Neurofilament gene expression: a major determinant of axonal caliber.

作者信息

Hoffman P N, Cleveland D W, Griffin J W, Landes P W, Cowan N J, Price D L

出版信息

Proc Natl Acad Sci U S A. 1987 May;84(10):3472-6. doi: 10.1073/pnas.84.10.3472.

Abstract

Within the wide spectrum of axonal diameters occurring in mammalian nerve fibers, each class of neurons has a relatively restricted range of axonal calibers. The control of caliber has functional significance because diameter is the principal determinant of conduction velocity in myelinated nerve fibers. Previous observations support the hypothesis that neurofilaments (NF) are major intrinsic determinants of axonal caliber in large myelinated nerve fibers. Following interruption of axons (axotomy) by crushing or cutting a peripheral nerve, caliber is reduced in the proximal axonal stumps, which extend from the cell bodies to the site of axotomy. (The distal axonal stumps, which are disconnected from the cell bodies, degenerate and are replaced by the outgrowth of regenerating axonal sprouts arising from the proximal stump). This reduction in axonal caliber in the proximal stumps is associated with a selective diminution in the amount of NF protein undergoing slow axonal transport in these axons, with a decrease in axonal NF content, and with reduced conduction velocity. The present report demonstrates that changes in axonal caliber after axotomy correlate with a selective alteration in NF gene expression. Hybridization with specific cDNAs was used to measure levels of mRNA encoding the 68-kDa neurofilament protein (NF68), beta-tubulin, and actin in lumbar sensory neurons of rat at various times after crushing the sciatic nerve. Between 4 and 42 days after axotomy by nerve crush, the levels of NF68 mRNA were reduced 2- to 3-fold. At the same times, the levels of tubulin and actin mRNAs were increased several-fold. These findings support the hypothesis that the expression of a single set of neuron-specific genes (encoding NF) directly determines axonal caliber, a feature of neuronal morphology with important consequences for physiology and behavior.

摘要

在哺乳动物神经纤维中出现的轴突直径的广泛范围内,每一类神经元的轴突口径范围相对受限。口径的控制具有功能意义,因为直径是有髓神经纤维传导速度的主要决定因素。先前的观察结果支持这样的假设,即神经丝(NF)是大型有髓神经纤维中轴突口径的主要内在决定因素。在通过挤压或切断外周神经中断轴突(轴突切断术)后,从细胞体延伸至轴突切断部位的近端轴突残端的口径会减小。(与细胞体断开连接的远端轴突残端会退化,并被源自近端残端的再生轴突芽的生长所取代)。近端残端轴突口径的这种减小与这些轴突中进行慢速轴突运输的NF蛋白量的选择性减少、轴突NF含量的降低以及传导速度的降低有关。本报告表明,轴突切断术后轴突口径的变化与NF基因表达的选择性改变相关。使用与特定cDNA的杂交来测量在挤压坐骨神经后不同时间大鼠腰段感觉神经元中编码68 kDa神经丝蛋白(NF68)、β-微管蛋白和肌动蛋白的mRNA水平。在神经挤压造成轴突切断后的4至42天之间,NF68 mRNA水平降低了2至3倍。同时,微管蛋白和肌动蛋白mRNA水平增加了几倍。这些发现支持这样的假设,即一组单一的神经元特异性基因(编码NF)的表达直接决定轴突口径,这是一种对生理学和行为具有重要影响的神经元形态特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dafc/304893/8224d1bc8d53/pnas00275-0402-a.jpg

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