Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
Brain Struct Funct. 2013 Jul;218(4):913-27. doi: 10.1007/s00429-012-0438-x. Epub 2012 Jul 5.
The ability of reward-predictive cues to potentiate reward-seeking behavior--a phenomenon termed Pavlovian--instrumental transfer (PIT)--depends on the activation of extracellular signal-regulated kinase (ERK) in the nucleus accumbens (NAc). Here, we utilized immunohistochemistry to investigate the subregional pattern of ERK activation during PIT, and the contribution of different elements in the PIT condition to the distribution of ERK signaling in the NAc of rats. We found that the occurrence of reward-seeking behavior (lever pressing) did not affect ERK activation in either the core or the shell of the NAc. In contrast, presentation of the reward-predictive cue (auditory conditioned stimulus) caused a significant increase in ERK activation in both subregions of the NAc, with the effect being slightly more robust in the core than the shell. Different from the pattern evoked by the reward-predictive cue, presentation of the reward itself (food pellets) had no effect on ERK activation in the core but caused a pronounced increase in ERK activation in the shell. Taken together, our results demonstrate that ERK signaling in the NAc during PIT involves both the core and the shell and is driven by the conditioned cue irrespective of whether the situation permits engagement in reward-seeking behavior. Furthermore, our results show that the subregional distribution of ERK signaling in the NAc evoked by rewards differs from that evoked by cues that predict them. The stimulus-specific differential pattern of ERK signaling described here may present the molecular complement to stimulus-specific increases in NAc cell firing reported previously.
奖励预测线索增强奖励寻求行为的能力——一种被称为条件反射-工具性转移(PIT)的现象——依赖于伏隔核(NAc)中细胞外信号调节激酶(ERK)的激活。在这里,我们利用免疫组织化学技术研究了 PIT 期间 ERK 激活的亚区模式,以及 PIT 条件下不同因素对大鼠 NAc 中 ERK 信号分布的贡献。我们发现,奖励寻求行为(压杆)的发生不会影响 NAc 核心或壳中的 ERK 激活。相比之下,奖励预测线索(听觉条件刺激)的呈现会导致 NAc 两个亚区的 ERK 激活显著增加,核心区的效果略强于壳区。与奖励预测线索引起的模式不同,奖励本身(食物丸)的呈现对核心区的 ERK 激活没有影响,但会导致壳区的 ERK 激活明显增加。总之,我们的结果表明,PIT 期间 NAc 中的 ERK 信号涉及核心和壳区,并且由条件线索驱动,而与是否允许进行奖励寻求行为无关。此外,我们的结果表明,奖励引起的 NAc 中 ERK 信号的亚区分布与预测它们的线索引起的信号不同。这里描述的 ERK 信号的刺激特异性差异模式可能代表了先前报道的 NAc 细胞放电刺激特异性增加的分子补充。