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MSK1 对于丰富的经验在整个生命周期中产生有益的突触和认知效应是必需的。

MSK1 is required for the beneficial synaptic and cognitive effects of enriched experience across the lifespan.

机构信息

School of Life Sciences, University of Warwick, Coventry CV4 7AL, UK.

School of Pharmacy and Biomedical Sciences, University of Central Lancashire, Preston PR1 2HE, UK.

出版信息

Aging (Albany NY). 2023 Jul 10;15(13):6031-6072. doi: 10.18632/aging.204833.

Abstract

Positive experiences, such as social interaction, cognitive training and physical exercise, have been shown to ameliorate some of the harms to cognition associated with ageing. Animal models of positive interventions, commonly known as environmental enrichment, strongly influence neuronal morphology and synaptic function and enhance cognitive performance. While the profound structural and functional benefits of enrichment have been appreciated for decades, little is known as to how the environment influences neurons to respond and adapt to these positive sensory experiences. We show that adult and aged male wild-type mice that underwent a 10-week environmental enrichment protocol demonstrated improved performance in a variety of behavioural tasks, including those testing spatial working and spatial reference memory, and an enhancement in hippocampal LTP. Aged animals in particular benefitted from enrichment, performing spatial memory tasks at levels similar to healthy adult mice. Many of these benefits, including in gene expression, were absent in mice with a mutation in an enzyme, MSK1, which is activated by BDNF, a growth factor implicated in rodent and human cognition. We conclude that enrichment is beneficial across the lifespan and that MSK1 is required for the full extent of these experience-induced improvements of cognitive abilities, synaptic plasticity and gene expression.

摘要

积极的体验,如社交互动、认知训练和体育锻炼,已被证明可以减轻与衰老相关的一些认知损害。积极干预的动物模型,通常被称为环境丰富,强烈影响神经元形态和突触功能,并提高认知表现。虽然几十年来人们已经认识到丰富环境的深远的结构和功能益处,但对于环境如何影响神经元对这些积极的感觉体验做出反应和适应的了解甚少。我们发现,经过 10 周环境丰富方案的成年和老年雄性野生型小鼠在各种行为任务中的表现得到了改善,包括测试空间工作和空间参照记忆的任务,以及海马体 LTP 的增强。特别是老年动物受益于丰富环境,其在空间记忆任务中的表现与健康成年小鼠相似。其中许多益处,包括基因表达,在一种酶 MSK1 发生突变的小鼠中是不存在的,BDNF 可激活 MSK1,BDNF 是一种与啮齿动物和人类认知有关的生长因子。我们得出结论,丰富环境对整个生命周期都是有益的,并且 MSK1 是这些经验诱导的认知能力、突触可塑性和基因表达改善的全部所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec49/10373962/0fbd1ce7d10e/aging-15-204833-g001.jpg

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