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抑制 M 电流衰减会损害物体识别记忆的巩固。

Attenuation of M-Current Suppression Impairs Consolidation of Object Recognition Memory.

机构信息

Department of Pharmacology, University of California, Irvine, Irvine, California 92697.

Department of Neurobiology and Behavior, Center for the Neurobiology of Learning and Memory, University of California, Irvine, Irvine, California 92697.

出版信息

J Neurosci. 2020 Jul 22;40(30):5847-5856. doi: 10.1523/JNEUROSCI.0348-20.2020. Epub 2020 Jun 17.

Abstract

The M-current is a low voltage-activated potassium current generated by neuronal Kv7 channels. A prominent role of the M-current is to a create transient increase of neuronal excitability in response to neurotransmitters through the suppression of this current. Accordingly, M-current suppression is assumed to be involved in higher brain functions including learning and memory. However, there is little evidence supporting such a role to date. To address this gap, we examined behavioral tasks to assess learning and memory in homozygous Kv7.2 knock-in mice, Kv7.2(S559A), which show reduced M-current suppression while maintaining a normal basal M-current activity in neurons. We found that Kv7.2(S559A) mice had normal object location memory and contextual fear memory, but impaired long-term object recognition memory. Furthermore, short-term memory for object recognition was intact in Kv7.2(S559A) mice. The deficit in long-term object recognition memory was restored by the administration of a selective Kv7 channel inhibitor, XE991, when delivered during the memory consolidation phase. Lastly, c-Fos induction 2 h after training in Kv7.2(S559A) mice was normal in the hippocampus, which corresponds to intact object location memory, but was reduced in the perirhinal cortex, which corresponds to impaired long-term object recognition memory. Together, these results support the overall conclusion that M-current suppression is important for memory consolidation of specific types of memories. Dynamic regulation of neuronal excitation is a fundamental mechanism for information processing in the brain, which is mediated by changes in synaptic transmissions or by changes in ion channel activity. Some neurotransmitters can facilitate action potential firing by suppression of a low voltage-activated potassium current, M-current. We demonstrate that M-current suppression is critical for establishment of long-term object recognition memory, but is not required for establishment of hippocampus-dependent location memory or contextual memory. This study suggests that M-current suppression is important for stable encoding of specific types of memories.

摘要

M 电流是神经元 Kv7 通道产生的一种低电压激活的钾电流。M 电流的一个主要作用是通过抑制这种电流,在神经元对神经递质做出反应时产生短暂的兴奋性增加。因此,M 电流的抑制被认为与包括学习和记忆在内的高级脑功能有关。然而,迄今为止,几乎没有证据支持这种作用。为了解决这一差距,我们检查了行为任务,以评估具有正常基础 M 电流活性但 M 电流抑制减少的 Kv7.2 纯合敲入小鼠,Kv7.2(S559A),在学习和记忆方面的表现。我们发现 Kv7.2(S559A) 小鼠具有正常的物体位置记忆和情境恐惧记忆,但长期物体识别记忆受损。此外,Kv7.2(S559A) 小鼠的物体识别短期记忆完好无损。当在记忆巩固阶段给予选择性 Kv7 通道抑制剂 XE991 时,长期物体识别记忆缺陷得到恢复。最后,在 Kv7.2(S559A) 小鼠中,训练后 2 小时海马体中的 c-Fos 诱导正常,这与完好的物体位置记忆相对应,但在周边大脑皮层中减少,这与长期物体识别记忆受损相对应。总之,这些结果支持了总体结论,即 M 电流抑制对于特定类型记忆的记忆巩固很重要。神经元兴奋的动态调节是大脑信息处理的基本机制,它通过突触传递的变化或离子通道活性的变化来介导。一些神经递质可以通过抑制低电压激活的钾电流 M 电流来促进动作电位的发射。我们证明,M 电流抑制对于长期物体识别记忆的建立至关重要,但对于海马依赖性位置记忆或情境记忆的建立则不是必需的。这项研究表明,M 电流抑制对于特定类型记忆的稳定编码很重要。

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