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Hippocampal proteomic changes in high-fat diet-induced obese mice associated with memory decline

海马结构 突触后电位 生物 突触后密度 海马体 信号转导衔接蛋白 支架蛋白 细胞生物学 神经科学 认知功能衰退 内分泌学 内科学 信号转导 受体 生物化学 医学 痴呆 疾病
作者
Ping Lu,Cun-Xiu Gao,Fei-Jian Luo,Yu-Ting Huang,Mei‐Mei Gao,Yue‐Sheng Long
出处
期刊:Journal of Nutritional Biochemistry [Elsevier BV]
卷期号:125: 109554-109554 被引量:6
标识
DOI:10.1016/j.jnutbio.2023.109554
摘要

Substantial evidences suggest that chronic consumption of high-fat diets (HFDs) can lead to obesity, abnormal metabolism, as well as cognitive impairment. Molecular and cellular changes regarding hippocampal dysfunctions have been identified in multiple HFD animal models. Therefore, in-depth identification of expression changes of hippocampal proteins is critical for understanding the mechanism of HFD-induced cognitive deficits. In this study, we fed 3-week old male mice with HFD for 3 months to generate obese mice who exhibit systemic metabolic abnormality and learning and memory decline. Using an iTRAQ-labeled proteomic analysis, we identified a total of 82 differentially expressed proteins (DEPs) in the hippocampus upon HFD with 35 up-regulated proteins and 47 down-regulated proteins. Functional enrichment indicated that these DEPs were predominantly enriched in regulation of catabolic process, dendritic shaft, neuron projection morphogenesis and GTPase regulator activity. Protein-protein interaction enrichment showed that the DEPs are mostly enriched in postsynaptic functions; and of them, 6 proteins (i.e., DLG3, SYNGAP1, DCLK1, GRIA4, GRIP1 and AGHGAP32) were involved in several functional assemblies of the postsynaptic density including G-protein signaling, scaffolding and adaptor, kinase and AMPA signaling, respectively. Collectively, our findings suggest that these DEPs upon HFD might contribute to memory decline by disturbing neuronal and postsynaptic functions in the hippocampus.
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