乙酰化
海马结构
海马体
组蛋白
蛋白质组
化学
生物化学
长时程增强
免疫印迹
突触可塑性
组蛋白H3
生物
药理学
赖氨酸
神经科学
受体
基因
氨基酸
作者
Zhiqiang Lu,Xiaomeng Xu,Dongmei Li,Na Sun,Songyi Lin
标识
DOI:10.1021/acs.jafc.1c05155
摘要
Memory impairment is becoming a potential health issue with the delicacy of diet and social stress. Sea cucumber peptides (SCP) prevent memory impairment, as previously reported. In this study, further research was performed using hippocampal lysine-acetylome to explore molecular regulation mechanisms. C57BL/6 mice were treated with scopolamine via intraperitoneal injection to simulate memory impairment. To determine the influence of SCP on the total acetylated-protein level of the hippocampus, acetylated-proteomics was performed. SCP increased the acetylation level of histone (H3 and H4). Meanwhile, for non-histones, the differentially acetylated proteins were involved in multiple memory-related pathways, as shown by KEGG enrichment analysis. Additionally, long-term potentiation was confirmed by western blotting. Finally, a combined analysis of proteome and lysine acetylome revealed that SCP contributed to synaptic vesicle cycle regulation and dopamine metabolism. Consequently, our findings revealed that SCP was potentially neuroprotective by regulating post-transcriptional hippocampal protein acetylation.
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