Amygdala stimulation transforms short-term memory into remote memory by persistent activation of atypical protein kinase C in the anterior cingulate cortex

IF 2.8 3区 医学 Q2 NEUROSCIENCES Neuroscience Pub Date : 2025-03-17 Epub Date: 2025-02-01 DOI:10.1016/j.neuroscience.2025.01.065
William Almaguer-Melian , Daymara Mercerón-Martínez , Laura Alacán-Ricardo , Arturo Ernesto Vergara Piña , Changchi Hsieh , Jorge A. Bergado-Rosado , Todd Charlton Sacktor
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Abstract

Although many studies have addressed the role of the amygdala in modulating long-term memory, it is not known whether weak training plus amygdala stimulation can transform a short-term memory into a remote memory. Object place recognition (OPR) memory after strong training remains hippocampus-dependent through the persistent action of protein kinase Mzeta (PKMζ) for at least 6 days, but it is unknown whether weak training plus amygdala stimulation can transform short-term memory into an even longer memory, and whether such memory is stored through more persistent action of PKMζ in hippocampus. We trained male rats (150 total in our study) to acquire OPR and 15 min or 5 h later induced a brief pattern of electrical stimulation in basolateral amygdala (BLA). Our results reveal that a short-term memory lasting < 4h can be converted into remote memory lasting at least 3 weeks if the BLA is activated 15 min, but not 5 h after learning. To examine how this remote memory is maintained, we injected ZIP, an inhibitor of atypical protein kinase Cs (aPKCs), PKMζ and PKCι/λ, into either hippocampal CA1, dentate gyrus (DG), or anterior cingulate cortex (ACC). Our data reveal amygdala stimulation produces consolidation into remote memory, not by persistent aPKC activation in the hippocampal formation, but in ACC. Our data establish a powerful modulating role of the BLA in forming remote memory and open a path in the search for neurological restoration of memory, based on enhancing synaptic plasticity in aging or neurodegenerative disorders such as Alzheimer’s disease.

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杏仁核刺激通过前扣带皮层非典型蛋白激酶C的持续激活将短期记忆转化为远程记忆。
尽管许多研究已经探讨了杏仁核在调节长期记忆中的作用,但尚不清楚弱训练加杏仁核刺激是否能将短期记忆转化为远程记忆。强训练后的物体位置识别(OPR)记忆通过蛋白激酶Mzeta (PKMζ)的持续作用至少6 天仍是海马体依赖的,但弱训练加杏仁核刺激是否能将短期记忆转化为更长的记忆,以及这种记忆是否通过PKMζ在海马体中更持久的作用而储存。我们训练雄性大鼠(共150只)获得OPR,并在15 min或5 h后在基底外侧杏仁核(BLA)诱导短暂的电刺激模式。我们的研究结果表明,短期记忆是持久的
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来源期刊
Neuroscience
Neuroscience 医学-神经科学
CiteScore
6.20
自引率
0.00%
发文量
394
审稿时长
52 days
期刊介绍: Neuroscience publishes papers describing the results of original research on any aspect of the scientific study of the nervous system. Any paper, however short, will be considered for publication provided that it reports significant, new and carefully confirmed findings with full experimental details.
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