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Dopamine D2R is Required for Hippocampal-dependent Memory and Plasticity at the CA3-CA1 Synapse

机译:多巴胺D2R是CA3-CA1 Synapse的海马依赖记忆和可塑性所必需的

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摘要

Dopamine receptors play an important role in motivational, emotional, and motor responses. In addition, growing evidence suggests a key role of hippocampal dopamine receptors in learning and memory. It is well known that associative learning and synaptic plasticity of CA3-CA1 requires the dopamine D-1 receptor (D1R). However, the specific role of the dopamine D-2 receptor (D2R) on memory-related neuroplasticity processes is still undefined. Here, by using two models of D2R loss, D2R knockout mice (Drd2(-/-)) and mice with intrahippocampal injections of Drd2-small interfering RNA (Drd2-siRNA), we aimed to investigate how D2R is involved in learning and memory as well as in long-term potentiation of the hippocampus. Our studies revealed that the genetic inactivation of D2R impaired the spatial memory, associative learning, and the classical conditioning of eyelid responses. Similarly, deletion of D2R reduced the activity-dependent synaptic plasticity in the hippocampal CA1-CA3 synapse. Our results demonstrate the first direct evidence that D2R is essential in behaving mice for trace eye blink conditioning and associated changes in hippocampal synaptic strength. Taken together, these results indicate a key role of D2R in regulating hippocampal plasticity changes and, in consequence, acquisition and consolidation of spatial and associative forms of memory.
机译:多巴胺受体在动机、情绪和运动反应中发挥重要作用。此外,越来越多的证据表明,海马多巴胺受体在学习和记忆中起着关键作用。众所周知,CA3-CA1的联想学习和突触可塑性需要多巴胺D-1受体(D1R)。然而,多巴胺D-2受体(D2R)在记忆相关神经可塑性过程中的具体作用尚不明确。在这里,通过使用两种D2R缺失模型,即D2R敲除小鼠(Drd2(-/-)和海马内注射Drd2小干扰RNA(Drd2 siRNA)的小鼠,我们旨在研究D2R如何参与学习和记忆以及海马的长期增强。我们的研究表明,D2R的基因失活损害了空间记忆、联想学习和眼睑反应的经典条件反射。同样,D2R的缺失降低了海马CA1-CA3突触的活动依赖性突触可塑性。我们的研究结果首次直接证明了D2R在小鼠的行为中起着至关重要的作用,可用于跟踪眨眼条件反射和海马突触强度的相关变化。综上所述,这些结果表明D2R在调节海马可塑性变化,进而获得和巩固空间和联想记忆形式方面发挥着关键作用。

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