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PMID: 26359799 已发表 · ppublish 英语

Effects of simulated microgravity on the expression of presynaptic proteins distorting the GABA/glutamate equilibrium--A proteomics approach.

Proteomics ·第 15 卷 ·第 22 期 ·2016-09-21

Wang Yun, Iqbal Javed, Liu Yahui, Su Rui, Lu Song, Peng Guang, Zhang Yongqian, Qing Hong, Deng Yulin

摘要

Microgravity may cause cognition-related changes in the animal nervous system due to the resulting uneven flow of fluids in the body. These changes may restrict the long-term stay of humans in space for various purposes. In this study, a rat tail suspension model (30°) was used to explore the effects of 21 days of prolonged simulated microgravity (SM) on the expression of proteins involved in cognitive functions in the rat hippocampus. SM decreased the content of γ-aminobutyric acid (GABA) and increased the content of glutamate (Glu) in the rat hippocampus. A comparative (18)O-labeled quantitative proteomics strategy was applied to detect the differential expression of synaptic proteins under SM. Fifty-three proteins were found to be differentially expressed under SM. Microgravity induces difficulty in the formation of the SNARE complex due to the down-regulation of vesicle-associated membrane protein 3(VAMP3) and syntaxin-1A. Synaptic vesicle recycling may also be affected due to the dysregulation of syntaxin-binding protein 5 (tomosyn), rab3A and its effector rim2. Both processes are disturbed, indicating that presynaptic proteins mediate a GABA/Glu imbalance under SM. These findings provide clues for understanding the mechanism of the GABA/Glu equilibrium in the hippocampus induced by microgravity in space and represent steps toward safe space travel.

关键词
Animal proteomics Hippocampus Neurotransmitter release Proteomics SNARE complex Simulated microgravity
文献信息
期刊
Proteomics
期刊简称
Proteomics
发表日期
2016-09-21
收录日期
2016-01-15
更新日期
2016-01-15
语言
英语
国家/地区
Germany
NLM ID
101092707
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