Simonato M, Hosford D A, Labiner D M, Shin C, Mansbach H H, McNamara J O
Division of Neurology, Duke University, Durham, NC 27710.
Brain Res Mol Brain Res. 1991 Sep;11(2):115-24. doi: 10.1016/0169-328x(91)90113-c.
Kindling is a phenomenon in which brief afterdischarges (ADs) evoked by periodic electrical stimulation of the brain eventually result in generalized clonic motor seizures. Once present, the enhanced sensitivity to electrical stimulation is lifelong. The mechanism by which brief ADs produce this long-lasting effect may involve a change in gene expression. To begin to investigate changes in gene expression that occur during kindling, we used in situ hybridization histochemistry to examine the time course of expression of mRNAs of the immediate early genes (IEGs) c-fos, c-jun, NGFI-A, and c-myc within the dorsal hippocampus of rats following a kindling AD. Three principal findings resulted from this study. First, the expression of all mRNAs except c-myc was significantly increased (P less than 0.05) within discrete neuronal populations. Second, the time course of expression of the IEGs differed markedly within the same neuronal population. Third, for a given IEG, the time course and anatomic pattern of expression were strikingly different among different neuronal populations of the hippocampus. The prolonged and distinctly different patterns of IEG expression suggest that target genes are differentially regulated in these neuronal populations for prolonged periods following a kindling AD.
点燃效应是一种现象,即通过对大脑进行周期性电刺激诱发的短暂的后放电(ADs)最终会导致全身性阵挛性运动发作。一旦出现,对电刺激的敏感性增强会持续终生。短暂的ADs产生这种长期效应的机制可能涉及基因表达的变化。为了开始研究点燃效应期间发生的基因表达变化,我们使用原位杂交组织化学来检测在大鼠点燃性AD后,背侧海马中即早基因(IEGs)c-fos、c-jun、NGFI-A和c-myc的mRNA表达的时间进程。该研究得出了三个主要发现。首先,除c-myc外,所有mRNA在离散的神经元群体中的表达均显著增加(P小于0.05)。其次,IEGs在同一神经元群体中的表达时间进程明显不同。第三,对于给定的IEG,海马不同神经元群体之间的表达时间进程和解剖模式显著不同。IEG表达的延长和明显不同的模式表明,在点燃性AD后,这些神经元群体中的靶基因在较长时间内受到不同的调控。