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二甲基砜(DMSO2)在微生物-哺乳动物共代谢中的代谢指纹图谱。

Metabolic fingerprint of dimethyl sulfone (DMSO2) in microbial-mammalian co-metabolism.

作者信息

He Xuan, Slupsky Carolyn M

机构信息

Department of Nutrition, Department of Food Science and Technology, One Shields Avenue , University of California, Davis, Davis, California 95616, United States.

出版信息

J Proteome Res. 2014 Dec 5;13(12):5281-92. doi: 10.1021/pr500629t. Epub 2014 Oct 3.

Abstract

There is growing awareness that intestinal microbiota alters the energy harvesting capacity of the host and regulates metabolism. It has been postulated that intestinal microbiota are able to degrade unabsorbed dietary components and transform xenobiotic compounds. The resulting microbial metabolites derived from the gastrointestinal tract can potentially enter the circulation system, which, in turn, affects host metabolism. Yet, the metabolic capacity of intestinal microbiota and its interaction with mammalian metabolism remains largely unexplored. Here, we review a metabolic pathway that integrates the microbial catabolism of methionine with mammalian metabolism of methanethiol (MT), dimethyl sulfide (DMS), and dimethyl sulfoxide (DMSO), which together provide evidence that supports the microbial origin of dimethyl sulfone (DMSO2) in the human metabolome. Understanding the pathway of DMSO2 co-metabolism expends our knowledge of microbial-derived metabolites and motivates future metabolomics-based studies on ascertaining the metabolic consequences of intestinal microbiota on human health, including detoxification processes and sulfur xenobiotic metabolism.

摘要

人们越来越意识到肠道微生物群会改变宿主的能量获取能力并调节新陈代谢。据推测,肠道微生物群能够降解未被吸收的饮食成分并转化外源性化合物。源自胃肠道的微生物代谢产物可能会进入循环系统,进而影响宿主代谢。然而,肠道微生物群的代谢能力及其与哺乳动物代谢的相互作用在很大程度上仍未得到探索。在此,我们综述了一条代谢途径,该途径将甲硫氨酸的微生物分解代谢与甲硫醇(MT)、二甲基硫醚(DMS)和二甲基亚砜(DMSO)的哺乳动物代谢整合在一起,共同提供了支持人类代谢组中二甲基砜(DMSO2)微生物来源的证据。了解DMSO2共代谢途径扩展了我们对微生物衍生代谢产物的认识,并推动了未来基于代谢组学的研究,以确定肠道微生物群对人类健康的代谢影响,包括解毒过程和硫外源性物质代谢。

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