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损伤相关的GAP - 43表达诱导在大鼠背根神经节神经元中表现出轴突分支特异性。

Injury-associated induction of GAP-43 expression displays axon branch specificity in rat dorsal root ganglion neurons.

作者信息

Schreyer D J, Skene J H

机构信息

Department of Physiology, Queen's University, Kingston, Canada.

出版信息

J Neurobiol. 1993 Jul;24(7):959-70. doi: 10.1002/neu.480240709.

Abstract

Peripheral nerve injury results in the increased synthesis and axonal transport of the growth-associated protein GAP-43 in dorsal root ganglion (DRG) neurons, coincident with regenerative growth of the injured peripheral axon branches. To determine whether the injury-associated signalling mechanism which leads to GAP-43 induction also operates through the central branches of DRG axons, we used immunocytochemistry to compare the expression of GAP-43 in adult rat DRG neurons 2 weeks after dorsal root crush lesions (central axotomy) or peripheral nerve crush lesions (peripheral axotomy). In uninjured ganglia, a subpopulation of smaller DRG neurons expresses moderate levels of GAP-43, whereas larger neurons generally do not. At 2 weeks following peripheral axotomy, virtually all axotomized neurons, large and small, express high levels of GAP-43. At 2 weeks following dorsal root lesions, no increase in GAP-43 expression is detected. Thus, the injury-associated up-regulation of GAP-43 expression in DRG neurons is triggered by a mechanism that is responsive to injury of only the peripheral, and not the central, axon branches. These findings support the hypothesis that GAP-43 induction in DRG neurons is caused by disconnection from peripheral target tissue, not by axon injury per se.

摘要

外周神经损伤会导致背根神经节(DRG)神经元中生长相关蛋白GAP - 43的合成增加和轴突运输增加,这与受损外周轴突分支的再生生长同时发生。为了确定导致GAP - 43诱导的损伤相关信号传导机制是否也通过DRG轴突的中枢分支起作用,我们使用免疫细胞化学方法比较了成年大鼠在背根挤压损伤(中枢轴突切断)或外周神经挤压损伤(外周轴突切断)2周后DRG神经元中GAP - 43的表达。在未受伤的神经节中,较小的DRG神经元亚群表达中等水平的GAP - 43,而较大的神经元通常不表达。在外周轴突切断后2周,几乎所有被切断轴突的神经元,无论大小,都表达高水平的GAP - 43。在背根损伤后2周,未检测到GAP - 43表达增加。因此,DRG神经元中与损伤相关的GAP - 43表达上调是由一种仅对外周而非中枢轴突分支损伤有反应的机制触发的。这些发现支持了这样一种假说,即DRG神经元中GAP - 43的诱导是由与外周靶组织的断开连接引起的,而不是由轴突损伤本身引起的。

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