Onodera H, Araki T, Kogure K
Department of Neurology, Tohoku University School of Medicine, Sendai, Japan.
Brain Res. 1989 Feb 27;481(1):1-7. doi: 10.1016/0006-8993(89)90478-2.
The influence of transient forebrain ischemia on the temporal alteration of protein kinase C (PKC) activity in the rat hippocampus was analyzed by quantitative autoradiography using [3H]phorbol 12,13-dibutyrate [( 3H]PDBu). As reported previously, the grain density was highest in the strata oriens and radiatum in the CA1 subfield. After transient forebrain ischemia (20 min), the [3H]PDBu binding in the CA1 subfield gradually increased during early recirculation, and became maximum 6-12 h after ischemia, when no microscopic damage of the CA1 pyramidal cells was obvious. Thereafter, grain density decreased and binding activity in the CA1 was lost by approximately 40% 7 days after ischemia, when CA1 pyramidal cells had become necrotic. This indicated a close association of phorbol ester binding sites with CA1 pyramidal cells. By contrast, [3H]PDBu binding sites were unchanged in the stratum radiatum in the CA3 throughout the recirculation, although the number of binding sites in the stratum oriens of the CA3 was decreased during early recirculation period. Seven days after recirculation, in the molecular layer of the dentate gyrus, where granule cells remained intact, [3H]PDBu binding activity increased by 33%, with a higher grain density in the inner region (supragranular layer). These results suggest that enhancement of PKC activity and/or translocation of the enzyme play an important role in the postischemic modulation of synaptic efficacy in the hippocampal formation and neuronal death of CA1 pyramidal cells.
采用[3H]佛波醇12,13 - 二丁酸酯([3H]PDBu)通过定量放射自显影法分析了短暂性前脑缺血对大鼠海马中蛋白激酶C(PKC)活性的时间变化的影响。如先前报道,在CA1亚区的海马层和辐射层中颗粒密度最高。短暂性前脑缺血(20分钟)后,CA1亚区的[3H]PDBu结合在早期再灌注期间逐渐增加,并在缺血后6 - 12小时达到最大值,此时CA1锥体细胞无明显微观损伤。此后,颗粒密度下降,缺血7天后CA1中的结合活性丧失约40%,此时CA1锥体细胞已坏死。这表明佛波醇酯结合位点与CA1锥体细胞密切相关。相比之下,在整个再灌注过程中,CA3辐射层中的[3H]PDBu结合位点没有变化,尽管在早期再灌注期间CA模3原层中的结合位点数量减少。再灌注7天后,在颗粒细胞保持完整的齿状回分子层中,[3H]PDBu结合活性增加了33%,在内侧区域(颗粒上层)颗粒密度更高。这些结果表明,PKC活性的增强和/或该酶的转位在海马结构中缺血后突触效能的调节和CA1锥体细胞的神经元死亡中起重要作用。