Department of Immunobiology, Yale University School of Medicine, New Haven, CT 06519, USA.
Department of Chemistry, Yale University, New Haven, CT 06520, USA.
Science. 2022 Oct 28;378(6618):eabm3233. doi: 10.1126/science.abm3233.
Microbiota-derived metabolites that elicit DNA damage can contribute to colorectal cancer (CRC). However, the full spectrum of genotoxic chemicals produced by indigenous gut microbes remains to be defined. We established a pipeline to systematically evaluate the genotoxicity of an extensive collection of gut commensals from inflammatory bowel disease patients. We identified isolates from divergent phylogenies whose metabolites caused DNA damage and discovered a distinctive family of genotoxins-termed the indolimines-produced by the CRC-associated species A non-indolimine-producing mutant lacked genotoxicity and failed to exacerbate colon tumorigenesis in mice. These studies reveal the existence of a previously unexplored universe of genotoxic small molecules from the microbiome that may affect host biology in homeostasis and disease.
肠道微生物衍生的可引起 DNA 损伤的代谢产物可能导致结直肠癌(CRC)。然而,肠道原籍微生物产生的全部遗传毒性化学物质仍有待确定。我们建立了一个管道,系统地评估来自炎症性肠病患者的广泛肠道共生菌的遗传毒性。我们从不同的系统发育中鉴定出其代谢物可引起 DNA 损伤的分离株,并发现了一组独特的遗传毒素-吲哚啉类,由 CRC 相关物种产生。非吲哚啉类产生的突变体缺乏遗传毒性,并且不能在小鼠中加剧结肠肿瘤发生。这些研究揭示了微生物组中存在一个以前未知的遗传毒性小分子的宇宙,这些小分子可能在体内平衡和疾病中影响宿主生物学。
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