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The Contribution of NMDA Receptor Signaling in the Corticobasal Ganglia Reward Network to Appetitive Pavlovian Learning

机译:皮质基底神经节奖励网络中NMDA受体信号对巴甫洛夫学习性学习的贡献

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摘要

NMDA receptors (NMDARs) contribute to phasic transmission and synaptic plasticity and are thought to be important for learning. To better understand where NMDAR signaling is necessary for learning, we combined viral genetic strategies with genetic mouse models to investigate the contribution of NMDARs in the dopamine system to appetitive Pavlovian conditioning. NMDAR signaling in dopamine neurons was not required for Pavlovian conditioning; however, NMDARs in D1 dopamine receptor (D1R)-expressing medium spiny neurons (MSNs), which receive input from dopamine neurons, were critical for this type of learning. NMDAR signaling was also required in brain regions that project to dopamine neurons, because removing NMDARs from afferent neurons to the ventral tegmental area (VTA) also prevented learning. This effect was likely attributable to loss of NMDAR signaling in the neurons of the prefrontal cortex (PFC), because learning could be restored in these animals by rescuing NMDAR expression in the PFC. Moreover, removing NMDARs exclusively from the PFC also prevented learning. Our findings suggest that NMDARs in neurons that project to and receive projections from the VTA are necessary for Pavlovian conditioning and specifically implicate the PFC and D1R-expressing MSNs in associative learning.
机译:NMDA受体(NMDARs)促进相传递和突触可塑性,被认为对学习很重要。为了更好地了解NMDAR信号对于学习的必要性,我们将病毒遗传策略与遗传小鼠模型相结合,以研究NMDAR在多巴胺系统中对巴甫洛夫饮食条件的影响。巴甫洛夫调节不需要多巴胺神经元中的NMDAR信号;然而,在D1多巴胺受体(D1R)表达的中棘神经元(MSN)中,NMDAR接受多巴胺神经元的输入,对于此类学习至关重要。在投射到多巴胺神经元的大脑区域中也需要NMDAR信号传导,因为从传入神经元到腹侧被盖区(VTA)去除NMDAR也会阻止学习。这种作用很可能归因于前额叶皮层(PFC)神经元中NMDAR信号的丢失,因为可以通过抢救PFC中NMDAR的表达来恢复这些动物的学习。此外,仅从PFC中删除NMDAR也会阻止学习。我们的发现表明,向VTA投影并从VTA接收投影的神经元中的NMDAR对于巴甫洛夫条件式是必需的,并且特别暗示了PFC和D1R表达的MSN在联想学习中的作用。

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