Gass P, Spranger M, Herdegen T, Bravo R, Köck P, Hacke W, Kiessling M
Department of Neuropathology, University of Heidelberg, Federal Republic of Germany.
Acta Neuropathol. 1992;84(5):545-53. doi: 10.1007/BF00304474.
FOS and JUN proteins are transcription factors thought to be involved in coupling neuronal excitation to target gene expression. Cortical infarction of consistent size and location was produced by irradiating the rat brain with Xenon light through the intact skull for 20 min following systemic injection of the photo-sensitizing dye, rose bengal. To investigate the time course and distribution pattern of five cellular immediate early gene (IEG)-encoded proteins after focal ischemia, the expression of c-FOS, FOS B, c-JUN, JUN B and JUN D was studied immunocytochemically in sham-operated control animals and at different postischemic time intervals up to 24 h. A separate group of animals was pretreated with the non-competitive N-methyl-D-aspartate (NMDA) antagonist MK-801. Photochemically induced focal ischemia caused a rapid induction of FOS and JUN proteins in the entire ipsilateral cortex apart from the ischemic focus. Immunoreactivity in the ipsilateral subcortical gray and white matter and in the entire contralateral hemisphere was indistinguishable from control animals. Individual IEG-encoded proteins were sequentially induced with increased levels of immunoreactivity persisting for different time periods up to 24 h. c-FOS, FOS B, c-JUN and JUN B exhibited a characteristic distribution pattern as reflected by different staining intensities in individual cortical layers. The rapid IEG induction in the entire ipsilateral sensorimotor and limbic structure-associated cortices after photochemically induced infarction most likely reflects spreading depression caused by ischemia and mediated by NMDA receptors.(ABSTRACT TRUNCATED AT 250 WORDS)
FOS和JUN蛋白是转录因子,被认为参与将神经元兴奋与靶基因表达相偶联。在全身注射光敏染料孟加拉玫瑰红后,通过完整颅骨用氙光照射大鼠脑20分钟,产生大小和位置一致的皮质梗死。为了研究局灶性缺血后五种细胞即早基因(IEG)编码蛋白的时间进程和分布模式,采用免疫细胞化学方法研究了假手术对照动物以及缺血后长达24小时不同时间间隔时c-FOS、FOS B、c-JUN、JUN B和JUN D的表达。另一组动物用非竞争性N-甲基-D-天冬氨酸(NMDA)拮抗剂MK-801进行预处理。光化学诱导的局灶性缺血导致除缺血灶外同侧整个皮质中FOS和JUN蛋白快速诱导。同侧皮质下灰质和白质以及对侧整个半球的免疫反应性与对照动物无差异。各个IEG编码蛋白依次被诱导,免疫反应性水平升高并在长达24小时的不同时间段持续存在。c-FOS、FOS B、c-JUN和JUN B表现出特征性分布模式,这通过各皮质层中不同的染色强度得以体现。光化学诱导梗死同侧整个感觉运动和边缘结构相关皮质中IEG的快速诱导很可能反映了由缺血引起并由NMDA受体介导的扩散性抑制。(摘要截短于250词)