Genetic deletion of zinc transporter ZnT3 induces progressive cognitive deficits in mice by impairing dendritic spine plasticity and glucose metabolism

被引:1
作者
Zong, Rui [1 ]
Zhang, Xiaoding [1 ]
Dong, Xiaohui [1 ]
Liu, Guan [1 ]
Zhang, Jieyao [1 ]
Gao, Yiting [1 ]
Zhang, Zhongyang [1 ]
Ma, Yiming [1 ]
Gao, Haixia [1 ]
Gamper, Nikita [1 ,2 ]
机构
[1] Hebei Med Univ, Inst Med Sci & Hlth, Ctr Innovat Drug Res & Evaluat, Key Lab Neural & Vasc Biol,Minist Educ,Dept Pharma, Shijiazhuang, Hebei, Peoples R China
[2] Univ Leeds, Fac Biol Sci, Sch Biomed Sci, Leeds, England
来源
FRONTIERS IN MOLECULAR NEUROSCIENCE | 2024年 / 17卷
基金
英国生物技术与生命科学研究理事会;
关键词
ZnT3; zinc; dendritic plasticity; spatial memory; glycometabolism; INSULIN SIGNALING PATHWAY; LONG-TERM POTENTIATION; SYNAPTIC VESICLES; DIABETES-MELLITUS; VESICULAR ZINC; RAT-BRAIN; MEMORY; HIPPOCAMPUS; GLUT4; RESISTANCE;
D O I
10.3389/fnmol.2024.1375925
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Zinc transporter 3 (ZnT3) is abundantly expressed in the brain, residing in synaptic vesicles, where it plays important roles in controlling the luminal zinc levels. In this study, we found that ZnT3 knockout in mice decreased zinc levels in the hippocampus and cortex, and was associated with progressive cognitive impairments, assessed at 2, 6, and 9-month of age. The results of Golgi-Cox staining demonstrated that ZnT3 deficiency was associated with an increase in dendritic complexity and a decrease in the density of mature dendritic spines, indicating potential synaptic plasticity deficit. Since ZnT3 deficiency was previously linked to glucose metabolism abnormalities, we tested the expression levels of genes related to insulin signaling pathway in the hippocampus and cortex. We found that the Expression of glucose transporters, GLUT3, GLUT4, and the insulin receptor in the whole tissue and synaptosome fraction of the hippocampus of the ZnT3 knockout mice were significantly reduced, as compared to wild-type controls. Expression of AKT (A serine/threonine protein kinase) and insulin-induced AKT phosphorylation was also reduced in the hippocampus of ZnT3 knockout mice. We hypothesize that the ZnT3 deficiency and reduced brain zinc levels may cause cognitive impairment by negatively affecting glycose metabolism via decreased expression of key components of insulin signaling, as well as via changes in synaptic plasticity. These finding may provide new therapeutic target for treatments of neurodegenerative disorders.
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页数:18
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