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微生物酶通过在小鼠胃肠道内使三氯生重新激活来诱导结肠炎。

Microbial enzymes induce colitis by reactivating triclosan in the mouse gastrointestinal tract.

机构信息

Department of Food Science, University of Massachusetts, Amherst, MA, USA.

Departments of Chemistry, Biochemistry, Microbiology and Genomics, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.

出版信息

Nat Commun. 2022 Jan 10;13(1):136. doi: 10.1038/s41467-021-27762-y.

Abstract

Emerging research supports that triclosan (TCS), an antimicrobial agent found in thousands of consumer products, exacerbates colitis and colitis-associated colorectal tumorigenesis in animal models. While the intestinal toxicities of TCS require the presence of gut microbiota, the molecular mechanisms involved have not been defined. Here we show that intestinal commensal microbes mediate metabolic activation of TCS in the colon and drive its gut toxicology. Using a range of in vitro, ex vivo, and in vivo approaches, we identify specific microbial β-glucuronidase (GUS) enzymes involved and pinpoint molecular motifs required to metabolically activate TCS in the gut. Finally, we show that targeted inhibition of bacterial GUS enzymes abolishes the colitis-promoting effects of TCS, supporting an essential role of specific microbial proteins in TCS toxicity. Together, our results define a mechanism by which intestinal microbes contribute to the metabolic activation and gut toxicity of TCS, and highlight the importance of considering the contributions of the gut microbiota in evaluating the toxic potential of environmental chemicals.

摘要

新兴研究支持三氯生(TCS),一种在数千种消费产品中发现的抗菌剂,会加剧结肠炎和结肠炎相关的结直肠癌发生。虽然 TCS 的肠道毒性需要肠道微生物群的存在,但涉及的分子机制尚未确定。在这里,我们表明肠道共生微生物介导 TCS 在结肠中的代谢激活,并驱动其肠道毒理学。使用一系列体外、离体和体内方法,我们确定了涉及的特定微生物β-葡萄糖醛酸酶(GUS)酶,并确定了在肠道中代谢激活 TCS 所需的分子基序。最后,我们表明靶向抑制细菌 GUS 酶可消除 TCS 促进结肠炎的作用,支持特定微生物蛋白在 TCS 毒性中发挥重要作用。总之,我们的结果定义了肠道微生物如何促进 TCS 的代谢激活和肠道毒性的机制,并强调在评估环境化学物质的潜在毒性时考虑肠道微生物群的贡献的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef4c/8748916/b4ff8493b064/41467_2021_27762_Fig1_HTML.jpg

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