首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Selective expression of the immediate early gene c-jun in axotomized rat medial septal neurons is not related to neuronal degeneration.
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Selective expression of the immediate early gene c-jun in axotomized rat medial septal neurons is not related to neuronal degeneration.

机译:轴突切除的大鼠中隔中隔神经元中立即早期基因c-jun的选择性表达与神经元变性无关。

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摘要

In the present study, we use the anatomically well defined septohippocampal projection to study the molecular events involved in the reaction of neurons to axotomy. The expression of three immediate early genes (c-fos, c-jun, and jun B) was investigated in rat septohippocampal neurons after axotomy by bilateral fimbria-fornix transection (FFT). Moreover, the extent of retrograde degeneration in the septal complex was assessed by analyzing DNA fragmentation. In a postoperative time course analysis, a strong increase of c-jun immunoreactivity (IR) was observed in the nuclei of neurons in the medial septum/diagonal band complex (MSDB) 2 and 6 d postaxotomy, which was followed by a decline after 12 d and 3 weeks, respectively. Nine weeks after FFT, c-jun IR had disappeared. The c-jun-positive MS neurons were identified as former septohippocampal projection cells by double-labeling with the retrogradely transported tracer Fluoro-Gold injected into the hippocampus before axotomy. In line with the immunocytochemical data, there was a massive induction of c-jun mRNA in the axotomized MS neurons as visualized by in situ hybridization histochemistry. c-fos mRNA and c-fos or jun B IR were not detectable in either unoperated or lesioned medial septal neurons. Experiments using the TdT-mediated deoxyuridine triphosphate nick-end-labeling technique, designed to detect nuclear DNA fragmentation in degenerating neurons, complemented this study. During the postoperative time range studied, MS neurons did not exhibit DNA fragmentation. We conclude that MSDB neurons survive axotomy by FFT and display characteristic changes in gene expression.
机译:在本研究中,我们使用解剖学上明确定义的海马海豚投影来研究神经元与轴突切开反应中涉及的分子事件。通过双侧纤维膜穹ni切断术(FFT)研究了轴突切开后大鼠隔海马神经元中三个立即早期基因(c-fos,c-jun和jun B)的表达。此外,通过分析DNA片段来评估隔膜复合物中逆行变性的程度。在术后的时程分析中,在中隔/对角带复合物(MSDB)第2天和第6天的神经元细胞核中观察到了c-jun免疫反应(IR)的强烈增加,随后在第12天后下降d和3周。 FFT九周后,c-jun IR消失了。 c-jun阳性的MS神经元通过在轴突切开术前注入海马中的逆行转运示踪剂Fluoro-Gold进行双重标记而被鉴定为前海马区投射细胞。与免疫细胞化学数据一致,如原位杂交组织化学所见,在被切开的MS神经元中大量诱导c-jun mRNA。在未手术或病变的内侧中隔神经元中均未检测到c-fos mRNA和c-fos或jun B IR。使用TdT介导的脱氧尿苷三磷酸缺口末端标记技术进行的实验,旨在检测退化神经元中的核DNA片段,对这项研究进行了补充。在研究的术后时间范围内,MS神经元未表现出DNA片段化。我们得出的结论是,MSDB神经元可以通过FFT进行轴突切开术并在基因表达中显示特征变化。

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