MicroRNA-181c Ameliorates Cognitive Impairment Induced by Chronic Cerebral Hypoperfusion in Rats

被引:0
作者
Chen Fang
Qian Li
Guowen Min
Min Liu
Jing Cui
Jing Sun
Liang Li
机构
[1] Capital Medical University,Department of Pathology, School of Basic Medical Sciences
来源
Molecular Neurobiology | 2017年 / 54卷
关键词
MicroRNA-181c; Tripartite motif 2; Chronic cerebral hypoperfusion; Cognition; Ubiquitination; Rat;
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摘要
Chronic cerebral hypoperfusion (CCH) characterized by global cerebral ischemia is an important risk factor contributing to the development of dementia. MicroRNAs (miRNAs) play important roles in the cellular adaptation to long-term ischemia/hypoxia by turning off or on the expression of target genes. MiR-181c is widely expressed in the nervous system, and tripartite motif 2 (TRIM2) is one of its target genes. In this work, we had identified that progressive spatial memory deficiency was induced in the bilateral common carotid artery occlusion (2-VO) rat models. Meanwhile, inhibition of miR-181c expression and upregulation of TRIM2 in the hippocampus of 2-VO rats were found accompanying with reduction in the dendritic branching and dendrite spine density of the hippocampal neurons. Viral vector-mediated miR-181c delivery might improve the cognitive deficiency via TRIM2 on neurofilament light (NF-L) ubiquitination resulting in remodeling of the hippocampal neurons as well as increase in N-methyl-d-aspartate receptor 1 (NR1) subunit cell surface expression. Meanwhile, miR-181c might rescue the cellular activity from ischemia/hypoxia. These results indicated a novel miRNA-mediated mechanism involving miR-181c and TRIM2 in the cognitive impairment induced by CCH and provided a rationale for the development of miRNA-based strategies for prevention of dementia.
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页码:8370 / 8385
页数:15
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  • [1] Muller M(2014)MicroRNAs in Alzheimer’s disease: differential expression in hippocampus and cell-free cerebrospinal fluid Neurobiol Aging 35 152-158
  • [2] Kuiperij HB(2014)Deciphering the function and regulation of microRNAs in Alzheimer’s disease and Parkinson’s disease ACS Chem Neurosci 5 884-894
  • [3] Claassen JA(2012)Cell-type-based analysis of microRNA profiles in the mouse brain Neuron 73 35-48
  • [4] Kusters B(2013)Changes in microRNA expression profile in hippocampus during the acquisition and extinction of cocaine-induced conditioned place preference in rats J Biomed Sci 20 96-53
  • [5] Verbeek MM(2015)Elevated microRNA-181c and microRNA-30d levels in the enlarged amygdala of the valproic acid rat model of autism Neurobiol Dis 80 42-335
  • [6] Qiu L(2012)Target gene repression mediated by miRNAs miR-181c and miR-9 both of which are down-regulated by amyloid-beta J Mol Neurosci 46 324-2151
  • [7] Zhang W(2001)The tripartite motif family identifies cell compartments EMBO J 20 2140-37
  • [8] Tan EK(2011)The E3-ubiquitin ligase TRIM2 regulates neuronal polarization J Neurochem 117 29-196
  • [9] Zeng L(1996)Compartmentation of alpha-internexin and neurofilament triplet proteins in cultured hippocampal neurons J Neurocytol 25 181-730
  • [10] He M(1998)Splice variant-specific interaction of the NMDA receptor subunit NR1 with neuronal intermediate filaments J Neurosci 18 720-885