Hayward M D, Duman R S, Nestler E J
Department of Psychiatry, Yale University School of Medicine, Connecticut Mental Health Center, New Haven 06508.
Brain Res. 1990 Aug 20;525(2):256-66. doi: 10.1016/0006-8993(90)90872-9.
Opiate regulation of the nuclear proto-oncogene c-fos was studied in the locus coeruleus (LC) and other regions of rat brain by immunoblotting, northern blotting, and in situ hybridization procedures. Precipitation of opiate withdrawal in rats, which is known to increase LC firing rates 4-fold, led to a two- to three-fold increase in levels of mRNA and protein for c-fos in the LC 1-2 h after initiation of withdrawal. In contrast, levels of c-fos expression were decreased in LC from rats treated acutely or chronically with morphine but not experiencing withdrawal, conditions under which LC firing rates are depressed. Similar regulation of c-fos expression during opiate withdrawal was found in the amygdala, ventral tegmentum, nucleus accumbens, neostriatum, and cerebral cortex, but not in a number of other brain regions studied, which included the hippocampus, dorsal raphe, periaqueductal gray, and paragigantocellularis. In the LC and some other brain regions, induction of c-fos during opiate withdrawal was associated with a parallel induction of c-jun, another nuclear proto-oncogene, which, like c-fos, is expressed rapidly in brain in response to certain extracellular stimuli. The results demonstrate a novel use of c-fos in neuropharmacology, namely to map neuronal pathways and neuronal cell types activated in response to acute and chronic opiate administration and during opiate withdrawal, as well as in response to other psychotropic drug treatments.
通过免疫印迹法、Northern印迹法和原位杂交技术,研究了阿片类药物对大鼠脑蓝斑(LC)及其他区域核原癌基因c-fos的调控作用。已知诱发大鼠阿片戒断反应会使LC放电频率增加4倍,戒断开始后1-2小时,LC中c-fos的mRNA和蛋白质水平会增加2至3倍。相反,急性或慢性给予吗啡但未出现戒断反应的大鼠LC中,c-fos表达水平降低,此时LC放电频率受到抑制。在杏仁核、腹侧被盖区、伏隔核、新纹状体和大脑皮层中,也发现了阿片戒断期间c-fos表达的类似调控,但在其他一些研究的脑区中未发现,这些脑区包括海马体、背侧中缝核、导水管周围灰质和巨细胞旁核。在LC和其他一些脑区,阿片戒断期间c-fos的诱导与另一个核原癌基因c-jun的平行诱导有关,c-jun与c-fos一样,在脑中对某些细胞外刺激会快速表达。结果表明c-fos在神经药理学中有新的用途,即绘制响应急性和慢性阿片类药物给药、阿片戒断以及其他精神药物治疗时激活的神经通路和神经细胞类型。