Department of Neurophysiology, Medical Faculty, Ruhr University Bochum, 44780 Bochum, Germany.
Cereb Cortex. 2014 Apr;24(4):845-58. doi: 10.1093/cercor/bhs362. Epub 2012 Nov 25.
Dopamine (DA) plays an essential role in the enablement of cognition. It adds color to experience-dependent information storage, conferring salience to the memories that result. At the synaptic level, experience-dependent information storage is enabled by synaptic plasticity, and given its importance for memory formation, it is not surprising that DA comprises a key neuromodulator in the enablement of synaptic plasticity, and particularly of plasticity that persists for longer periods of time: Analogous to long-term memory. The hippocampus, that is a critical structure for the synaptic processing of semantic, episodic, spatial, and declarative memories, is specifically affected by DA, with the D1/D5 receptor proving crucial for hippocampus-dependent memory. Furthermore, D1/D5 receptors are pivotal in conferring the properties of novelty and reward to information being processed by the hippocampus. They also facilitate the expression of persistent forms of synaptic plasticity, and given reports that both long-term potentiation and long-term depression encode different aspects of spatial representations, this suggests that D1/D5 receptors can drive the nature and qualitative content of stored information in the hippocampus. In light of these observations, we propose that D1/D5 receptors gate hippocampal long-term plasticity and memory and are pivotal in conferring the properties of novelty and reward to information being processed by the hippocampus.
多巴胺(DA)在认知能力的实现中起着至关重要的作用。它为经验依赖的信息存储增添了色彩,使产生的记忆更加显著。在突触水平上,经验依赖的信息存储是通过突触可塑性实现的,鉴于其对记忆形成的重要性,多巴胺是突触可塑性实现的关键神经调节剂,尤其是对于持续时间较长的可塑性:类似于长期记忆。海马体是语义、情景、空间和陈述性记忆的突触处理的关键结构,特别受到多巴胺的影响,D1/D5 受体对于海马体依赖的记忆至关重要。此外,D1/D5 受体对于将新颖性和奖励属性赋予海马体处理的信息至关重要。它们还促进持久形式的突触可塑性的表达,并且由于报告称长时程增强和长时程压抑分别编码空间表示的不同方面,这表明 D1/D5 受体可以驱动海马体中存储信息的性质和定性内容。鉴于这些观察结果,我们提出 D1/D5 受体门控海马体的长期可塑性和记忆,并对赋予海马体处理的信息的新颖性和奖励属性至关重要。