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记忆形成过程中多巴胺受体Dop1R2的时间限制性功能。

A temporally restricted function of the dopamine receptor Dop1R2 during memory formation.

作者信息

Kaldun Jenifer C, Calia Emanuele, Bangalore Mukunda Ganesh Chinmai, Fritsch Cornelia, Komarov Nikita, Sprecher Simon G

机构信息

Department of Biology, University of Fribourg, Fribourg, Switzerland.

出版信息

Elife. 2025 Jul 9;13:RP99368. doi: 10.7554/eLife.99368.

Abstract

Dopamine is a crucial neuromodulator involved in many brain processes, including learning and the formation of memories. Dopamine acts through multiple receptors and controls an intricate signaling network to regulate different tasks. While the diverse functions of dopamine are intensely studied, the interplay and role of the distinct dopamine receptors to regulate different processes is less well understood. An interesting candidate is the dopamine receptor Dop1R2 (also known as Damb), as it could connect to different downstream pathways. Dop1R2 is reported to be involved in forgetting and memory maintenance; however, the circuits requiring the receptors are unknown. To study Dop1R2 and its role in specific spatial and temporal contexts, we generated a conditional knockout line using the CRISPR-Cas9 technique. Two FRT sites were inserted, allowing flippase-mediated excision of the dopamine receptor in neurons of interest. To study the function of Dop1R2, we knocked it out conditionally in the mushroom body of , a well-studied brain region for memory formation. We show that Dop1R2 is required for later memory forms but not for short-term aversive or appetitive memories. Moreover, Dop1R2 is specifically required in the α/β-lobe and the α'/β'-lobe but not in the γ-lobe of the mushroom body. Our findings show a spatially and temporally restricted role of Dop1R2 in the process of memory formation, highlighting the differential requirement of receptors during distinct phases of learning.

摘要

多巴胺是一种关键的神经调质,参与许多大脑过程,包括学习和记忆形成。多巴胺通过多种受体发挥作用,并控制一个复杂的信号网络来调节不同的任务。虽然对多巴胺的多种功能进行了深入研究,但不同多巴胺受体在调节不同过程中的相互作用和作用尚不清楚。一个有趣的候选者是多巴胺受体Dop1R2(也称为Damb),因为它可以连接到不同的下游途径。据报道,Dop1R2参与遗忘和记忆维持;然而,需要该受体的神经回路尚不清楚。为了研究Dop1R2及其在特定空间和时间背景下的作用,我们使用CRISPR-Cas9技术生成了一个条件性敲除品系。插入了两个FRT位点,允许通过翻转酶介导在感兴趣的神经元中切除多巴胺受体。为了研究Dop1R2的功能,我们在蘑菇体中条件性敲除了它,蘑菇体是一个研究充分的记忆形成脑区。我们发现,Dop1R2是后期记忆形成所必需的,但不是短期厌恶或食欲记忆所必需的。此外,Dop1R2在蘑菇体的α/β叶和α'/β'叶中是特异性必需的,但在γ叶中不是。我们的研究结果表明,Dop1R2在记忆形成过程中具有空间和时间上受限的作用,突出了学习不同阶段对受体的不同需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7af9/12240586/cd18cf0a9f1a/elife-99368-fig1.jpg

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