Ribeiro Sidarta, Mello Claudio V, Velho Tarciso, Gardner Timothy J, Jarvis Erich D, Pavlides Constantine
Department of Neurobiology, Duke University Medical Center, Durham, North Carolina 27710, USA.
J Neurosci. 2002 Dec 15;22(24):10914-23. doi: 10.1523/JNEUROSCI.22-24-10914.2002.
Rapid-eye-movement (REM) sleep plays a key role in the consolidation of memories acquired during waking (WK). The search for mechanisms underlying that role has revealed significant correlations in the patterns of neuronal firing, regional blood flow, and expression of the activity-dependent gene zif-268 between WK and subsequent REM sleep. Zif-268 integrates a major calcium signal transduction pathway and is implicated by several lines of evidence in activity-dependent synaptic plasticity. Here we report that the induction of hippocampal long-term potentiation (LTP) during WK in rats leads to an upregulation of zif-268 gene expression in extrahippocampal regions during subsequent REM sleep episodes. This upregulation occurs predominantly in the amygdala, entorhinal, and auditory cerebral cortices during the first REM sleep episodes after LTP induction and reaches somatosensory and motor cerebral cortices as REM sleep recurs. We also show that hippocampal inactivation during REM sleep blocks extrahippocampal zif-268 upregulation, indicating that cortical and amygdalar zif-268 expression during REM sleep is under hippocampal control. Thus, expression of an activity-dependent gene involved in synaptic plasticity propagates gradually from the hippocampus to extrahippocampal regions as REM sleep recurs. These findings suggest that a progressive disengagement of the hippocampus and engagement of the cerebral cortex and amygdala occurs during REM sleep. They are also consistent with the view that REM sleep constitutes a privileged window for hippocampus-driven cortical activation, which may play an instructive role in the communication of memory traces from the hippocampus to the cerebral cortex.
快速眼动(REM)睡眠在巩固清醒(WK)期间获得的记忆方面起着关键作用。对该作用背后机制的探索揭示了在清醒和随后的REM睡眠之间,神经元放电模式、局部血流以及活性依赖基因zif-268的表达之间存在显著相关性。Zif-268整合了一条主要的钙信号转导途径,并且多条证据表明其与活性依赖的突触可塑性有关。在此我们报告,大鼠清醒期间海马体长期增强(LTP)的诱导会导致在随后的REM睡眠阶段,海马体外区域的zif-268基因表达上调。这种上调主要发生在LTP诱导后的首次REM睡眠阶段的杏仁核、内嗅皮质和听觉皮层,随着REM睡眠的反复出现,也会出现在体感和运动皮层。我们还表明,REM睡眠期间海马体失活会阻止海马体外的zif-268上调,这表明REM睡眠期间皮质和杏仁核中的zif-268表达受海马体控制。因此,随着REM睡眠的反复出现,参与突触可塑性的活性依赖基因的表达会从海马体逐渐传播到海马体外区域。这些发现表明,在REM睡眠期间海马体逐渐脱离,而大脑皮层和杏仁核逐渐参与进来。它们也与以下观点一致,即REM睡眠构成了海马体驱动的皮层激活的特权窗口,这可能在记忆痕迹从海马体向大脑皮层的传递中发挥指导作用。