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桶状皮层神经元通过接收受表观遗传调控的新突触传入,整合三重关联信号以实现记忆功能。

Barrel Cortical Neuron Integrates Triple Associated Signals for Their Memory Through Receiving Epigenetic-Mediated New Synapse Innervations.

机构信息

Qingdao University, School of Pharmacy, Qingdao, Shandong 266021, China.

Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Cereb Cortex. 2017 Dec 1;27(12):5858-5871. doi: 10.1093/cercor/bhx292.

Abstract

Associative learning is common way for information acquisition. Associative memory is essential to logical reasoning and associative thinking. The storages of multiple associated signals in individual neurons facilitate their integration, expand memory volume, and strengthen cognition ability. Associative memory cells that encode multiple signals have been reported, however, the mechanisms underlying their recruitment and working principle remain to be addressed. We have examined the recruitment of associative memory cells that integrate and store triple sensory signals as well as the potential mechanism of their recruitment. Paired mouse whisker, olfaction, and tail stimulations lead to odorant-induced motion and tail-induced whisker motion. In mice of expressing this cross-modal response, their barrel cortical neurons become to encode odor and tail signals alongside whisker signal. These barrel cortical neurons receive new synapse innervations from piriform and S1-tail cortical neurons. The emergence of cross-modal responses as well as the recruitments of new synapse innervations and associative memory cells in the barrel cortex need miRNA-324 and miRNA-133a, which downregulate Ttbk1 and Tet3. The co-activations of sensory cortices recruit their mutual synapse innervations and associative memory cells that integrate and store multiple associated signals through epigenetic-mediated process.

摘要

联想学习是信息获取的常见方式。联想记忆对于逻辑推理和联想思维至关重要。单个神经元中多个相关信号的存储有助于它们的整合、扩大记忆容量并增强认知能力。已经报道了编码多个信号的联想记忆细胞,但是它们的招募机制和工作原理仍有待解决。我们研究了整合和存储三重感觉信号的联想记忆细胞的招募情况,以及它们招募的潜在机制。成对的小鼠胡须、嗅觉和尾巴刺激会导致气味诱导的运动和尾巴诱导的胡须运动。在表达这种跨模态反应的小鼠中,其皮层神经元开始对气味和尾巴信号以及胡须信号进行编码。这些皮层神经元接收来自梨状皮层和 S1-尾巴皮层神经元的新突触传入。跨模态反应的出现以及新的突触传入和关联记忆细胞在皮层中的招募需要 miRNA-324 和 miRNA-133a,它们下调 Ttbk1 和 Tet3。感觉皮层的共同激活通过表观遗传介导的过程招募它们的相互突触传入和关联记忆细胞,这些细胞整合和存储多个相关信号。

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