Lee J A, Kim H K, Kim K H, Han J H, Lee Y S, Lim C S, Chang D J, Kubo T, Kaang B K
National Research Laboratory of Neurobiology, Institute of Molecular Biology and Genetics, School of Biological Sciences, College of Natural Sciences, Seoul National University, Seoul 151-742, Korea.
Learn Mem. 2001 Jul-Aug;8(4):220-6. doi: 10.1101/lm.40201.
In the marine mollusk Aplysia, the CCAAT/enhancer-binding protein, ApC/EBP, serves as an immediate early gene in the consolidation of long-term facilitation in the synaptic connection between the sensory and motor neurons of the gill-withdrawal reflex. To further examine the role of ApC/EBP as a molecular switch of a stable form of long-term memory, we cloned the full-length coding regions of two alternatively spliced forms, the short and long form of ApC/EBP. Overexpression of each isoform by DNA microinjection resulted in a l6-fold increase in the expression of the coinjected luciferase reporter gene driven by an ERE promoter. In addition, when we overexpressed ApC/EBP in Aplysia sensory neurons, we found that the application of a single pulse of 5-HT that normally induced only short-term facilitation now induced long-term facilitation. Conversely, when we attempted to block the synthesis of native ApC/EBP by microinjecting double-strand RNA or antisense RNA, we blocked long-term facilitation in a sequence-specific manner. These data support the idea that ApC/EBP is both necessary and sufficient to consolidate short-term memory into long-term memory. Furthermore, our results suggest that this double-strand RNA interference provides a powerful tool in the study of the genes functioning in learning and memory in Aplysia by specifically inhibiting both the constitutive and induced expression of the genes.
在海洋软体动物海兔中,CCAAT/增强子结合蛋白ApC/EBP作为一种即早基因,参与鳃收缩反射的感觉神经元和运动神经元之间突触连接的长期易化巩固过程。为了进一步研究ApC/EBP作为稳定形式长期记忆的分子开关的作用,我们克隆了两种可变剪接形式(ApC/EBP的短形式和长形式)的全长编码区。通过DNA显微注射过表达每种异构体,导致由雌激素反应元件(ERE)启动子驱动的共注射荧光素酶报告基因的表达增加了16倍。此外,当我们在海兔感觉神经元中过表达ApC/EBP时,我们发现通常仅诱导短期易化的单次5-羟色胺(5-HT)脉冲现在诱导了长期易化。相反,当我们试图通过显微注射双链RNA或反义RNA来阻断天然ApC/EBP的合成时,我们以序列特异性方式阻断了长期易化。这些数据支持这样的观点,即ApC/EBP对于将短期记忆巩固为长期记忆既必要又充分。此外,我们的结果表明,这种双链RNA干扰通过特异性抑制基因的组成型和诱导型表达,为研究海兔学习和记忆中发挥作用的基因提供了一种强大的工具。