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Inhibiting the Activity of CA1 Hippocampal Neurons Prevents the Recall of Contextual Fear Memory in Inducible ArchT Transgenic Mice

机译:抑制CA1海马神经元的活动防止召回的ArchT转基因小鼠的上下文恐惧记忆的召回。

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摘要

The optogenetic manipulation of light-activated ion-channels/pumps (i.e., opsins) can reversibly activate or suppress neuronal activity with precise temporal control. Therefore, optogenetic techniques hold great potential to establish causal relationships between specific neuronal circuits and their function in freely moving animals. Due to the critical role of the hippocampal CA1 region in memory function, we explored the possibility of targeting an inhibitory opsin, ArchT, to CA1 pyramidal neurons in mice. We established a transgenic mouse line in which tetracycline trans-activator induces ArchT expression. By crossing this line with a CaMKIIα-tTA transgenic line, the delivery of light via an implanted optrode inhibits the activity of excitatory CA1 neurons. We found that light delivery to the hippocampus inhibited the recall of a contextual fear memory. Our results demonstrate that this optogenetic mouse line can be used to investigate the neuronal circuits underlying behavior.
机译:光激活的离子通道/泵(即视蛋白)的光遗传学操纵可通过精确的时间控制可逆地激活或抑制神经元活动。因此,光遗传学技术在建立特定神经元回路与其在自由移动动物中的功能之间的因果关系方面具有巨大潜力。由于海马CA1区在记忆功能中的关键作用,我们探索了将抑制性视蛋白ArchT靶向小鼠CA1锥体神经元的可能性。我们建立了一个四环素反式激活因子诱导ArchT表达的转基因小鼠品系。通过与CaMKIIα-tTA转基因系杂交,通过植入的光极传递光会抑制兴奋性CA1神经元的活性。我们发现光传递到海马抑制了上下文恐惧记忆的回忆。我们的结果表明,这种光遗传学小鼠系可以用于调查行为的神经回路。

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