Bertaina V, Destrade C
Laboratoire de Neurosciences Comportementales et Cognitives, CNRS URA 339, Université de Bordeaux I, Talence, France.
Brain Res Cogn Brain Res. 1995 Oct;2(4):269-75. doi: 10.1016/0926-6410(95)90018-7.
Spatio-temporal patterns of c-fos mRNA expression were studied in the mouse brain following the partial acquisition of an appetitive conditioning task in a Skinner box. We used two experimental situations: during the initial acquisition of the task (acquisition paradigm) and during the retention test (recall paradigm). In both paradigms the in situ hybridization signal was exclusively located in the hippocampal formation and the posterior cingulate cortex. However, the time-dependent pattern of expression was quite different according to the experimental situation: mRNA levels peaked at 90 min post-test in both paradigms but returned to basal (control) level by 180 min in the acquisition group, while in CA3 and DG subfields, high levels of mRNA expression were maintained at 180 min in the recall group. Taken together these results suggest that the IEG c-fos is implicated in the different phases of post-acquisition memory processes and involve a differential spatio-temporal regulation of its expression in hippocampal subfields.
在斯金纳箱中对小鼠进行部分食欲性条件反射任务训练后,研究了其大脑中c-fos mRNA表达的时空模式。我们采用了两种实验情况:在任务的初始训练阶段(训练范式)和在记忆保持测试阶段(回忆范式)。在这两种范式中,原位杂交信号仅位于海马结构和后扣带回皮质。然而,根据实验情况,表达的时间依赖性模式有很大不同:在两种范式中,mRNA水平在测试后90分钟达到峰值,但在训练组中到180分钟时恢复到基础(对照)水平,而在回忆组中,CA3和齿状回亚区在180分钟时仍维持高水平的mRNA表达。综合这些结果表明,即刻早期基因c-fos参与了训练后记忆过程的不同阶段,并在海马亚区涉及对其表达的不同时空调节。