成年大鼠不同类型轴突损伤后运动神经元c-jun和nNOS表达水平的差异

Brain cell biology Pub Date : 2008-12-01 Epub Date: 2009-02-24 DOI:10.1007/s11068-009-9040-4
Li-Hua Zhou, Shu Han, Yuan-Yun Xie, Lin-Lin Wang, Zhi-Bin Yao
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引用次数: 29

摘要

在周围神经系统(PNS),根撕脱引起运动神经元退行性变,但大多数运动神经元可以存活。为了研究运动神经元变性的机制,我们比较了c-jun和神经元一氧化氮合酶(nNOS)的表达模式,这是已知的PNS再生和变性的分子角色,在接受臂丛轴断(Ax)、撕脱(Av)或预轴断加继发性撕脱(Ax + Av)的成年大鼠中。我们的研究结果表明,c-jun的激活在Ax中最高,持续时间最长,远强于Av和Ax + Av。除第1天外,Ax + Av中c-jun表达的时间过程和强度与Av相似,而开腹前条件下c-jun表达的短暂上调与Ax相当。单纯轴切不能诱导运动神经元中nNOS的表达。损伤后8周,Ax + Av组运动神经元损失不明显,而Av组为70%,Ax + Av组为85%以上。运动神经元的存活与c-jun诱导呈正相关,而与运动神经元中nNOS的表达无关。c-jun诱导与nNOS诱导在损伤运动神经元中呈负相关。我们的研究结果表明,c-jun和nNOS之间的功能串扰可能在撕脱性运动神经元变性中起重要作用,而c-jun可能是生存的先决因素,而nNOS可能是运动神经元变性发生的预测因子。
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Differences in c-jun and nNOS expression levels in motoneurons following different kinds of axonal injury in adult rats.

In the peripheral nervous system (PNS), root avulsion causes motoneuron degeneration, but the majority of motoneurons can survive axotomy. In order to study the mechanism of motoneuron degeneration, we compared the expression patterns of c-jun and neuronal nitric oxide synthase (nNOS), the well-known molecular players in PNS regeneration and degeneration, among adult rats having undergone axotomy (Ax), avulsion (Av), or pre-axotomy plus secondary avulsion (Ax + Av) of the brachial plexus. Our results showed that the highest and longest-lasting c-jun activation occurred in Ax, which was much stronger than those in Av and Ax + Av. The time course and intensity of c-jun expression in Ax + Av were similar to those in Av except on day 1, while the pre-axotomy condition resulted in a transient up-regulation of c-jun to a level comparable to that in Ax. Axotomy alone did not induce nNOS expression in motoneurons. Pre-axotomy left-shifted the time course of nNOS induction in Ax + Av compared to that in Av. Motoneuron loss was not evident in Ax, while it was 70% in Av and more than 85% in Ax + Av at 8 weeks postinjury. The survival of motoneurons was positively correlated with c-jun induction, but not with nNOS expression in motoneurons. Moreover, c-jun induction was negatively correlated with nNOS induction in injured motoneurons. Our results indicate that functional crosstalk between c-jun and nNOS might play an important role in avulsion-induced motoneuron degeneration, while c-jun might act as a prerequisite survival factor and nNOS might act as a predictor for the onset of motoneuron degeneration.

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Editorial: Hello, goodbye. Imaging activity of neuronal populations with new long-wavelength voltage-sensitive dyes. Differences in c-jun and nNOS expression levels in motoneurons following different kinds of axonal injury in adult rats. Direct interaction of SNARE complex binding protein synaphin/complexin with calcium sensor synaptotagmin 1 O-GlcNAc modification of radial glial vimentin filaments in the developing chick brain
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