Differential roles of medial/lateral entorhinal cortex in spatial/object memory and contribution to hippocampal functional neuronal organization.

IF 2.2 4区 心理学 Q3 BEHAVIORAL SCIENCES
Neurobiology of Learning and Memory Pub Date : 2025-01-01 Epub Date: 2024-12-15 DOI:10.1016/j.nlm.2024.108015
Shoko Arai, Krzysztof A Sypniewski, Constantine Pavlides
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引用次数: 0

Abstract

Episodic memory is subserved by interactions between entorhinal cortex (EC) and hippocampus. Within EC, a functional dissociation has been proposed for medial (MEC) and lateral (LEC) subregions, whereby, MEC processes spatial information while LEC processes information about objects and their location in space. Most of these studies, however, used classical methods which lack both spatial and temporal specificity, thus, the precise role of MEC/LEC in memory could use further clarification. First, we show a possible functional dissociation of MEC/LEC for place/object fear memory, by optogenetic suppression of these areas during memory acquisition. The main output of EC is to the hippocampus. MEC projects mainly towards proximal/superficial CA1 and deep CA3 while LEC towards distal/deep CA1 and superficial CA3. Dentate gyrus (DG), terminations of MEC/LEC are dissociated septotemporally. A functional dissociation has also been proposed for subregions of the hippocampus. Previous studies reported that proximal/distal CA1 process spatial/nonspatial information, respectively. For the second part of the study, we used the immediate-early gene Zif-268 to map neuronal activity in CA1. We first show enhanced Zif-268 expression and cluster-type organization in the proximal CA1 by place exposure and enhanced Zif-268 expression/cluster organization in distal CA1 following object exposure. Second, direct optogenetic stimulation of MEC/LEC, produced a similar enhancement/cluster-type organization in the same areas. Enhanced Zif-268 expression was also observed in CA3 and DG. These results substantiate previous findings and are proof positive that the hippocampus is organized in clusters to encode information generally ascribed to this structure.

内嗅皮层/外侧内嗅皮层在空间/物体记忆中的不同作用及对海马功能神经元组织的贡献。
情景记忆是由内嗅皮层(EC)和海马体之间的相互作用提供的。在EC中,已经提出了内侧(MEC)和外侧(LEC)子区域的功能分离,即MEC处理空间信息,而LEC处理关于物体及其空间位置的信息。然而,这些研究大多采用经典方法,缺乏空间和时间特异性,因此MEC/LEC在记忆中的确切作用有待进一步阐明。首先,我们展示了MEC/LEC在记忆获取过程中可能的功能分离,通过光遗传学抑制这些区域。EC的主要输出是海马。MEC主要指向近端/浅CA1和深CA3,而LEC主要指向远端/深CA1和浅CA3。齿状回(DG), MEC/LEC的末端在中隔颞区解离。功能性分离也被提出用于海马体的亚区域。先前的研究报道了近端/远端CA1分别处理空间/非空间信息。在研究的第二部分,我们使用了直接早期基因Zif-268来绘制CA1中的神经元活动。我们首先发现位置暴露增强了近端CA1的Zif-268表达和簇状组织,物体暴露后远端CA1的Zif-268表达和簇状组织增强。第二,直接光遗传学刺激MEC/LEC,在相同区域产生类似的增强/集群型组织。CA3和DG中Zif-268表达增强。这些结果证实了先前的发现,并且积极地证明了海马体是组织成簇的,以编码通常归因于该结构的信息。
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来源期刊
CiteScore
5.10
自引率
7.40%
发文量
77
审稿时长
12.6 weeks
期刊介绍: Neurobiology of Learning and Memory publishes articles examining the neurobiological mechanisms underlying learning and memory at all levels of analysis ranging from molecular biology to synaptic and neural plasticity and behavior. We are especially interested in manuscripts that examine the neural circuits and molecular mechanisms underlying learning, memory and plasticity in both experimental animals and human subjects.
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