Department of Zoology, Savitribai Phule Pune University, Pune, 411 007, India.
Department of Pharmaceutical Sciences, Rashtrasant Tukadoji Maharaj Nagpur University, Nagpur, 440 033, India.
Mol Neurobiol. 2022 Sep;59(9):5426-5442. doi: 10.1007/s12035-022-02917-0. Epub 2022 Jun 16.
Neuroadaptations in neurocircuitry of reward memories govern the persistent and compulsive behaviors. The study of the role of hippocampus in processing of reward memory and its retrieval is critical to our understanding of addiction and relapse. The aim of this study is to probe the epigenetic mechanisms underlying reward memory in the frame of dentate gyrus (DG). To that end, the rats conditioned to the food baited arm of a Y-maze and subjected to memory probe trial. The hippocampus of conditioned rats displayed higher mRNA levels of Ten-eleven translocase 1 (Tet1) and brain-derived neurotrophic factor (Bdnf) after memory probe trial. The DNA hydroxymethylation and TET1 occupancy at the Bdnf promoters showed concomitant increase. Stereotactic administration of Tet1 siRNA in the DG before and after conditioning inhibited reward memory formation and recall, respectively. Administration of Tet1 siRNA impaired the reward memory recall that was reinstated following administration of exogenous BDNF peptide or after wash-off period of 8 days. Infusion of a MEK/ERK inhibitor, U0126 in the DG inhibited reward memory retrieval. The TET1-induced DNA demethylation at the Bdnf promoters raised BDNF levels in the hippocampus, thereby setting the stage for reward memory retrieval. The study underscores the causative role of TET1 in the DG for reward memory formation and recall.
神经回路中奖励记忆的神经适应性支配着持久和强迫行为。研究海马体在处理奖励记忆及其检索中的作用对于我们理解成瘾和复发至关重要。本研究旨在探讨齿状回(DG)中奖励记忆的表观遗传机制。为此,将大鼠训练到 Y 型迷宫的食物诱饵臂,并进行记忆探测试验。在记忆探测试验后,条件反射大鼠的海马体中 Ten-eleven 转位酶 1(Tet1)和脑源性神经营养因子(Bdnf)的 mRNA 水平升高。Bdnf 启动子的 DNA 羟甲基化和 TET1 占有率同时增加。在条件反射前后,在 DG 中立体定向给予 Tet1 siRNA 分别抑制了奖励记忆的形成和回忆。给予 Tet1 siRNA 会损害奖励记忆的回忆,而外源性 BDNF 肽给药或 8 天冲洗期后会恢复这种回忆。MEK/ERK 抑制剂 U0126 在 DG 中的输注会抑制奖励记忆的检索。TET1 诱导的 Bdnf 启动子上的 DNA 去甲基化会提高海马体中的 BDNF 水平,从而为奖励记忆检索做好准备。该研究强调了 TET1 在 DG 中对奖励记忆形成和回忆的因果作用。