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急性皮质酮激发后去肾上腺大鼠海马亚区即刻早期基因表达的时间进程。

Time-course of immediate early gene expression in hippocampal subregions of adrenalectomized rats after acute corticosterone challenge.

作者信息

Hansson Anita C, Fuxe Kjell

机构信息

Department of Neuroscience, Karolinska Institutet, 10401 Stockholm, Sweden.

出版信息

Brain Res. 2008 Jun 18;1215:1-10. doi: 10.1016/j.brainres.2008.03.080. Epub 2008 Apr 10.

Abstract

Corticosterone hormones mediate the stress response and function in the survival of hippocampal neurons via activation of gluco-(GR) and mineralocorticoid (MR) receptors. Activated GR and MR couple the corticosterone signal through immediate early genes (IEGs) to the late expression of downstream genes, such as neurotrophic factors. The potential importance of IEGs in GR/MR-dependent plasticity in the brain is largely unknown. We examined the region- and time-dependent transcriptional profiles of six IEGs (c-fos, fosB, fra-1, junB, c-jun and egr-1) by in situ hybridization after acute corticosterone challenge in the hippocampus and the primary somatosensory cortex (S1). Adrenalectomized rats and subsequent hormone injections were used as a model system to eliminate interference of endogenous corticosterone on IEG expression. In the hippocampus, a single corticosterone dose (10 mg/kg, s.c.) caused a widespread and transient reduction of fosB mRNA after 0.8 h, whereas changes in both c-fos and fra-1 mRNA levels were restricted to the dentate gyrus region. Corticosterone treatment gave rise to a delayed and significant reduction of junB mRNA signals after 2 h in all hippocampal regions, which reversed to increase at 4 h. c-jun and egr-1 mRNA levels were unaffected by corticosterone treatment. On the contrary, in the S1, IEG expression seems to be unaffected by corticosterone treatment, with the exception of a transient increase of junB transcripts at 0.8 h. The early reduction in c-fos family and junB transcripts may contribute to the GR/MR-dependent changes on hippocampal plasticity and may be dependent on rapid corticosteroid signaling.

摘要

皮质酮激素介导应激反应,并通过激活糖皮质激素(GR)和盐皮质激素(MR)受体在海马神经元的存活中发挥作用。激活的GR和MR通过即刻早期基因(IEGs)将皮质酮信号与下游基因(如神经营养因子)的晚期表达偶联起来。IEGs在大脑中GR/MR依赖性可塑性中的潜在重要性在很大程度上尚不清楚。我们通过原位杂交检测了海马体和初级体感皮层(S1)在急性皮质酮刺激后六种IEGs(c-fos、fosB、fra-1、junB、c-jun和egr-1)的区域和时间依赖性转录谱。使用肾上腺切除的大鼠及随后的激素注射作为模型系统,以消除内源性皮质酮对IEGs表达的干扰。在海马体中,单次皮质酮剂量(10mg/kg,皮下注射)在0.8小时后导致fosB mRNA广泛且短暂的减少,而c-fos和fra-1 mRNA水平的变化仅限于齿状回区域。皮质酮处理在2小时后导致所有海马区域junB mRNA信号延迟且显著减少,在4小时时逆转增加。c-jun和egr-1 mRNA水平不受皮质酮处理的影响。相反,在S1中,除了0.8小时时junB转录本短暂增加外,IEGs表达似乎不受皮质酮处理的影响。c-fos家族和junB转录本的早期减少可能有助于海马可塑性的GR/MR依赖性变化,并且可能依赖于快速的皮质类固醇信号传导。

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