Raza Syed Ahsan, Albrecht Anne, Çalışkan Gürsel, Müller Bettina, Demiray Yunus Emre, Ludewig Susann, Meis Susanne, Faber Nicolai, Hartig Roland, Schraven Burkhart, Lessmann Volkmar, Schwegler Herbert, Stork Oliver
Department of Genetics and Molecular Neurobiology, Institute of Biology, Otto-von-Guericke University, 39120, Magdeburg, Germany.
Institute of Physiology, Medical Faculty, Otto-von-Guericke University, 39120, Magdeburg, Germany.
Nat Commun. 2017 Aug 4;8(1):189. doi: 10.1038/s41467-017-00205-3.
Cholinergic neuromodulation in the hippocampus controls the salience of background context memory acquired in the presence of elemental stimuli predicting an aversive reinforcement. With pharmacogenetic inhibition we here demonstrate that hilar perforant path-associated (HIPP) cells of the dentate gyrus mediate the devaluation of background context memory during Pavlovian fear conditioning. The salience adjustment is sensitive to reduction of hilar neuropeptide Y (NPY) expression via dominant negative CREB expression in HIPP cells and to acute blockage of NPY-Y1 receptors in the dentate gyrus during conditioning. We show that NPY transmission and HIPP cell activity contribute to inhibitory effects of acetylcholine in the dentate gyrus and that M1 muscarinic receptors mediate the cholinergic activation of HIPP cells as well as their control of background context salience. Our data provide evidence for a peptidergic local circuit in the dentate gyrus that mediates the cholinergic encoding of background context salience during fear memory acquisition.Intra-hippocampal circuits are essential for associating a background context with behaviorally salient stimuli and involve cholinergic modulation at SST interneurons. Here the authors show that the salience of the background context memory is modulated through muscarinic activation of NPY hilar perforant path associated interneurons and NPY signaling in the dentate gyrus.
海马体中的胆碱能神经调节控制着在存在预测厌恶强化的基本刺激时所获得的背景情境记忆的显著性。通过药物遗传学抑制,我们在此证明齿状回的海马穿通路径相关(HIPP)细胞在巴甫洛夫恐惧条件反射过程中介导背景情境记忆的贬值。这种显著性调整对通过在HIPP细胞中表达显性负性CREB来降低海马神经肽Y(NPY)的表达敏感,并且对条件反射期间齿状回中NPY - Y1受体的急性阻断敏感。我们表明,NPY传递和HIPP细胞活性有助于乙酰胆碱在齿状回中的抑制作用,并且M1毒蕈碱受体介导HIPP细胞的胆碱能激活及其对背景情境显著性的控制。我们的数据为齿状回中的一个肽能局部回路提供了证据,该回路在恐惧记忆获取过程中介导背景情境显著性的胆碱能编码。海马内回路对于将背景情境与行为上显著的刺激联系起来至关重要,并且涉及在SST中间神经元处的胆碱能调制。在此,作者表明背景情境记忆的显著性是通过NPY海马穿通路径相关中间神经元的毒蕈碱激活和齿状回中的NPY信号传导来调节的。