Activation of the PACAP/PAC1 Signaling Pathway Accelerates the Repair of Impaired Spatial Memory Caused by an Ultradian Light Cycle.

IF 3.9 4区 医学 Q2 NEUROSCIENCES ASN NEURO Pub Date : 2023-01-01 DOI:10.1177/17590914231169140
Dejiao Xu, Ying Zhang, Jun Feng, Hongyu Fu, Jiayi Li, Wei Wang, Zhen Li, Pingping Zhang, Xinqi Cheng, Liecheng Wang, Juan Cheng
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Abstract

The mechanism of light-induced spatial memory deficits, as well as whether rhythmic expression of the pituitary adenylyl cyclase-activating polypeptides (PACAP)-PAC1 pathway influenced by light is related to this process, remains unclear. Here, we aimed to investigate the role of the PACAP-PAC1 pathway in light-mediated spatial memory deficits. Animals were first housed under a T24 cycle (12 h light:12 h dark), and then light conditions were transformed to a T7 cycle (3.5 h light:3.5 h dark) for at least 4 weeks. The spatial memory function was assessed using the Morris water maze (MWM). In line with behavioral studies, rhythmic expression of the PAC1 receptor and glutamate receptors in the hippocampal CA1 region was assessed by western blotting, and electrophysiology experiments were performed to determine the influence of the PACAP-PAC1 pathway on neuronal excitability and synaptic signaling transmission. Spatial memory was deficient after mice were exposed to the T7 light cycle. Rhythmic expression of the PAC1 receptor was dramatically decreased, and the excitability of CA1 pyramidal cells was decreased in T7 cycle-housed mice. Compensation with PACAP1-38, a PAC1 receptor agonist, helped T7 cycle-housed mouse CA1 pyramidal cells recover neuronal excitability to normal levels, and cannulas injected with PACAP1-38 shortened the time to find the platform in MWM. Importantly, the T7 cycle decreased the frequency of AMPA receptor-mediated excitatory postsynaptic currents. In conclusion, the PACAP-PAC1 pathway is an important protective factor modulating light-induced spatial memory function deficits, affecting CA1 pyramidal cell excitability and excitatory synaptic signaling transmission.

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PACAP/PAC1信号通路的激活加速了超强光周期引起的空间记忆损伤的修复
光诱发空间记忆缺陷的机制,以及受光影响的垂体腺苷酸环化酶激活多肽(PACAP)-PAC1通路的节律性表达是否与这一过程有关,目前尚不清楚。在这里,我们旨在研究PACAP-PAC1通路在光介导的空间记忆缺陷中的作用。动物首先在T24周期(12小时光照:12小时黑暗)下饲养,然后将光照条件转换为T7周期(3.5小时光照:3.5小时黑暗)至少4周。采用Morris水迷宫(MWM)评价空间记忆功能。结合行为学研究,采用western blotting方法评估海马CA1区PAC1受体和谷氨酸受体的节律性表达,并通过电生理实验确定PACAP-PAC1通路对神经元兴奋性和突触信号传递的影响。T7光循环后小鼠空间记忆缺失。T7周期小鼠PAC1受体的节律性表达显著降低,CA1锥体细胞的兴奋性降低。用PAC1受体激动剂PACAP1-38进行补偿,有助于T7周期小鼠CA1锥体细胞的神经元兴奋性恢复到正常水平,注射PACAP1-38的套管缩短了在MWM中找到平台的时间。重要的是,T7周期降低了AMPA受体介导的兴奋性突触后电流的频率。综上所述,PACAP-PAC1通路是调节光致空间记忆功能缺陷的重要保护因子,影响CA1锥体细胞的兴奋性和兴奋性突触信号传递。
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来源期刊
ASN NEURO
ASN NEURO NEUROSCIENCES-
CiteScore
7.70
自引率
4.30%
发文量
35
审稿时长
>12 weeks
期刊介绍: ASN NEURO is an open access, peer-reviewed journal uniquely positioned to provide investigators with the most recent advances across the breadth of the cellular and molecular neurosciences. The official journal of the American Society for Neurochemistry, ASN NEURO is dedicated to the promotion, support, and facilitation of communication among cellular and molecular neuroscientists of all specializations.
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