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切断神经中乙酰胆碱酯酶分子形式的轴突运输逆转

Axonal transport reversal of acetylcholinesterase molecular forms in transected nerve.

作者信息

Hässig R, Tavitian B, Pappalardo F, Di Giamberardino L

机构信息

INSERM U. 334, Service Hospitalier Frédéric Joliot, Orsay, France.

出版信息

J Neurochem. 1991 Dec;57(6):1913-20. doi: 10.1111/j.1471-4159.1991.tb06403.x.

Abstract

Reversal of anterograde rapid axonal transport of four molecular forms of acetylcholinesterase (AChE) was studied in chick sciatic nerve during the 24-h period following a nerve transection. Reversal of AChE activity started approximately 1 h after nerve transection, and all the forms of the enzyme, except the monomeric ones, showed reversal of transport. The quantity of enzyme activity reversed 24 h after transection was twofold greater than that normally conveyed by retrograde transport. We observed no leakage of the enzyme at the site of the nerve transection and no reversal of AChE activity transport in the distal segment of the severed nerve, a result indicating that the material carried by retrograde axonal transport cannot be reversed by axotomy. Thus, a nerve transection induces both quantitative and qualitative changes in the retrograde axonal transport, which could serve as a signal of distal injury to the cell body. The velocity of reverse transport, measured within 6 h after transection, was found to be 213 mm/day, a value close to that of retrograde transport (200 mm/day). This suggests that the reversal taking place in severed sciatic nerve is similar to the anterograde-to-retrograde conversion process normally occurring at the nerve endings.

摘要

在切断神经后的24小时内,研究了鸡坐骨神经中四种分子形式的乙酰胆碱酯酶(AChE)顺行快速轴突运输的逆转情况。AChE活性的逆转在神经切断后约1小时开始,除单体形式外,所有形式的酶都显示出运输逆转。切断后24小时逆转的酶活性量比正常逆行运输所输送的酶活性量高出两倍。我们在神经切断部位未观察到酶的泄漏,并且在切断神经的远端段也未观察到AChE活性运输的逆转,这一结果表明逆行轴突运输所携带的物质不会因轴突切断而逆转。因此,神经切断会在逆行轴突运输中引起数量和质量上的变化,这可能作为向细胞体发出远端损伤的信号。在切断后6小时内测得的逆向运输速度为213毫米/天,这一数值接近逆行运输速度(200毫米/天)。这表明切断的坐骨神经中发生的逆转类似于通常在神经末梢发生的顺行到逆行的转换过程。

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