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A molecular dissociation between cued and contextual appetitive learning

机译:线索学习与情境式学习之间的分子分离

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摘要

In appetitive Pavlovian learning, animals learn to associate discrete cues or environmental contexts with rewarding outcomes, and these cues and/or contexts can potentiate an ongoing instrumental response for reward. Although anatomical substrates underlying cued and contextual learning have been proposed, it remains unknown whether specific molecular signaling pathways within the striatum underlie one form of learning or the other. Here, we show that while the striatum-enriched isoform of adenylyl cyclase (AC5) is required for cued appetitive Pavlovian learning, it is not required for contextual appetitive learning. Mice lacking AC5 (AC5KO) could not learn an appetitive Pavlovian learning task in which a discrete signal light predicted reward delivery, yet they could form associations between context and either natural or drug reward, which could in turn elicit Pavlovian approach behavior. However, unlike wild-type (WT) mice, AC5KO mice could not use these Pavlovian conditioned stimuli to potentiate ongoing instrumental behavior in a Pavlovian-to-instrumental transfer paradigm. These data suggest that AC5 is specifically required for learning associations between discrete cues and outcomes in which the temporal relationship between conditioned stimulus (CS) and unconditioned stimulus (US) is essential, while alternative signaling mechanisms may underlie the formation of associations between context and reward. In addition, loss of AC5 compromises the ability of both contextual and discrete cues to modulate instrumental behavior.
机译:在具有吸引力的巴甫洛夫式学习中,动物学会了将离散的线索或环境与奖励的结果相关联,这些线索和/或上下文可以增强正在进行的工具性奖励响应。尽管已经提出了暗示和情境学习基础的解剖学基础,但纹状体内的特定分子信号通路是否是一种学习形式还是另一种学习形式仍是未知的。在这里,我们显示,虽然暗示纹路的巴甫洛夫式学习需要腺苷酸环化酶(AC5)的纹状体富集异构体,但上下文式学习法则不需要。缺乏AC5(AC5KO)的小鼠无法学习具有竞争性的巴甫洛夫式学习任务,在该任务中,离散的信号灯可以预测奖励的传递,但是它们可以在情境与自然或药物奖励之间形成关联,从而可以引起巴甫洛夫式的进路行为。但是,与野生型(WT)小鼠不同,AC5KO小鼠无法使用这些巴甫洛夫条件刺激来增强从巴甫洛夫到器械的转移范例中正在进行的仪器行为。这些数据表明,AC5是学习离散线索与结果之间关联的特别要求,其中条件性刺激(CS)和非条件性刺激(US)之间的时间关系至关重要,而其他信号机制可能是情境与奖励之间联系形成的基础。此外,AC5的丢失会损害上下文提示和离散提示调节乐器行为的能力。

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