Basu Jayeeta, Zaremba Jeffrey D, Cheung Stephanie K, Hitti Frederick L, Zemelman Boris V, Losonczy Attila, Siegelbaum Steven A
Department of Neuroscience, Kavli Brain Institute, Columbia University Medical Center, 1051 Riverside Drive, New York, NY 10032, USA.
University of Texas at Austin, Austin, TX 78712, USA.
Science. 2016 Jan 8;351(6269):aaa5694. doi: 10.1126/science.aaa5694.
The cortico-hippocampal circuit is critical for storage of associational memories. Most studies have focused on the role in memory storage of the excitatory projections from entorhinal cortex to hippocampus. However, entorhinal cortex also sends inhibitory projections, whose role in memory storage and cortico-hippocampal activity remains largely unexplored. We found that these long-range inhibitory projections enhance the specificity of contextual and object memory encoding. At the circuit level, these γ-aminobutyric acid (GABA)-releasing projections target hippocampal inhibitory neurons and thus act as a disinhibitory gate that transiently promotes the excitation of hippocampal CA1 pyramidal neurons by suppressing feedforward inhibition. This enhances the ability of CA1 pyramidal neurons to fire synaptically evoked dendritic spikes and to generate a temporally precise form of heterosynaptic plasticity. Long-range inhibition from entorhinal cortex may thus increase the precision of hippocampal-based long-term memory associations by assessing the salience of mnemonormation to the immediate sensory input.
皮质-海马回路对于联想记忆的存储至关重要。大多数研究都集中在内嗅皮质到海马的兴奋性投射在记忆存储中的作用。然而,内嗅皮质也发出抑制性投射,其在记忆存储和皮质-海马活动中的作用在很大程度上仍未得到探索。我们发现,这些长程抑制性投射增强了情境和物体记忆编码的特异性。在回路层面,这些释放γ-氨基丁酸(GABA)的投射靶向海马抑制性神经元,因此充当一个去抑制门,通过抑制前馈抑制来短暂促进海马CA1锥体神经元的兴奋。这增强了CA1锥体神经元产生突触诱发的树突棘电位以及产生一种时间精确的异突触可塑性形式的能力。因此,来自内嗅皮质的长程抑制可能通过评估记忆信息对即时感觉输入的显著性来提高基于海马的长期记忆关联的精确性。