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Glutamate receptor function in learning and memory.

机译:谷氨酸受体在学习和记忆中的功能。

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The contribution of glutamate to synaptic transmission, plasticity and development is well established; current evidence is based on diverse approaches to decipher function and malfunction of this principal transmitter. With respect to learning and memory, we are now able to identify more specifically the role played by the three main glutamate receptor classes in learning and memory: centre stage is clearly the NMDA receptor, with overwhelming evidence proving its involvement in the actual learning process (encoding), throughout the animal kingdom. This is discussed with respect to many different types of learning. Evidence for the contribution of the AMPA receptors (AMPARs) is less clear-cut due to the general problem of specificity: block of AMPARs will shutdown neuronal communication, and this will affect various components essential for learning. Therefore, the role of AMPARs cannot be established in isolation. Problems of interpretation are outlined and a specific involvement of AMPARs in the regulation of neuronal excitation related to learning is proposed. Metabotropic glutamate receptors (mGluRs) may contribute very little to the actual acquisition of new information. However, memory formation appears to require mGluRs, through the modulation of consolidation and/or recall. Overall, mGluR functions seem variable and dependent on brain structure and learning task.
机译:谷氨酸在突触传递,可塑性和发育中的作用已得到充分证实;当前证据是基于多种方法来解密此主变送器的功能和故障。关于学习和记忆,我们现在能够更具体地确定三种主要谷氨酸受体类别在学习和记忆中所起的作用:中心阶段显然是NMDA受体,大量证据证明了它参与了实际的学习过程(整个动物界)。将针对许多不同类型的学习进行讨论。由于普遍存在的特异性问题,AMPA受体(AMPAR)的贡献证据尚不明确:阻滞AMPARs将使神经元沟通中断,这将影响学习必不可少的各个组成部分。因此,无法单独建立AMPAR的角色。概述了解释的问题,并提出了AMPAR在与学习有关的神经元兴奋的调节中的特定参与。代谢型谷氨酸受体(mGluRs)可能对实际获取新信息的贡献很小。但是,通过整合和/或召回的调制,记忆形成似乎需要mGluR。总体而言,mGluR功能似乎是可变的,并且取决于大脑的结构和学习任务。

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