少突胶质细胞
代谢组学
牛磺酸
代谢物
生物
内生
生物化学
细胞分化
细胞生物学
脱髓鞘病
化学
髓鞘
神经科学
中枢神经系统
氨基酸
生物信息学
基因
作者
Brittney A. Beyer,Mingliang Fang,Benjamin Sadrian,J. Rafael Montenegro-Burke,Warren C. Plaisted,Bernard P. Kok,Enrique Sáez,Tôru Kondo,Gary Siuzdak,Luke L. Lairson
标识
DOI:10.1038/nchembio.2517
摘要
Mass-spectrometry-based metabolomics analysis of oligodendrocyte differentiation led to the identification of an endogenous metabolite, taurine, that enhanced the process of drug-induced OPC differentiation. Endogenous metabolites play essential roles in the regulation of cellular identity and activity. Here we have investigated the process of oligodendrocyte precursor cell (OPC) differentiation, a process that becomes limiting during progressive stages of demyelinating diseases, including multiple sclerosis, using mass-spectrometry-based metabolomics. Levels of taurine, an aminosulfonic acid possessing pleotropic biological activities and broad tissue distribution properties, were found to be significantly elevated (∼20-fold) during the course of oligodendrocyte differentiation and maturation. When added exogenously at physiologically relevant concentrations, taurine was found to dramatically enhance the processes of drug-induced in vitro OPC differentiation and maturation. Mechanism of action studies suggest that the oligodendrocyte-differentiation-enhancing activities of taurine are driven primarily by its ability to directly increase available serine pools, which serve as the initial building block required for the synthesis of the glycosphingolipid components of myelin that define the functional oligodendrocyte cell state.
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