Lee Haein, Park Jina, Kim Seyun
Department of Biological Sciences, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.
KAIST Institute for the BioCentury, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.
Metabolites. 2023 Mar 20;13(3):453. doi: 10.3390/metabo13030453.
Acute stress response triggers various physiological responses such as energy mobilization to meet metabolic demands. However, the underlying molecular changes in the brain remain largely obscure. Here, we used a brief water avoidance stress (WAS) to elicit an acute stress response in mice. By employing RNA-sequencing and metabolomics profiling, we investigated the acute stress-induced molecular changes in the mouse whole brain. The aberrant expression of 60 genes was detected in the brain tissues of WAS-exposed mice. Functional analyses showed that the aberrantly expressed genes were enriched in various processes such as superoxide metabolism. In our global metabolomic profiling, a total of 43 brain metabolites were significantly altered by acute WAS. Metabolic pathways upregulated from WAS-exposed brain tissues relative to control samples included lipolysis, eicosanoid biosynthesis, and endocannabinoid synthesis. Acute WAS also elevated the levels of branched-chain amino acids, 5-aminovalerates, 4-hydroxy-nonenal-glutathione as well as mannose, suggesting complex metabolic changes in the brain. The observed molecular events in the present study provide a valuable resource that can help us better understand how acute psychological stress impacts neural functions.
急性应激反应会引发各种生理反应,如动员能量以满足代谢需求。然而,大脑中潜在的分子变化在很大程度上仍不清楚。在这里,我们使用短暂的水回避应激(WAS)在小鼠中引发急性应激反应。通过RNA测序和代谢组学分析,我们研究了急性应激诱导的小鼠全脑分子变化。在暴露于WAS的小鼠脑组织中检测到60个基因的异常表达。功能分析表明,异常表达的基因在超氧化物代谢等各种过程中富集。在我们的全局代谢组学分析中,共有43种脑代谢物因急性WAS而发生显著变化。与对照样本相比,暴露于WAS的脑组织中上调的代谢途径包括脂解、类花生酸生物合成和内源性大麻素合成。急性WAS还提高了支链氨基酸、5-氨基戊酸、4-羟基壬烯醛-谷胱甘肽以及甘露糖的水平,表明大脑中存在复杂的代谢变化。本研究中观察到的分子事件提供了宝贵的资源,有助于我们更好地理解急性心理应激如何影响神经功能。