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The gut microbial metabolite formate exacerbates colorectal cancer progression

机译:肠道微生物代谢产物甲酸加剧结直肠癌发展

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摘要

Different gut bacteria have been shown to promote colorectal cancer (CRC) progression. The authors identify formate as an oncometabolite derived from Fusobacterium nucleatum, which promotes CRC formation by increasing cancer stemness. The gut microbiome is a key player in the immunomodulatory and protumorigenic microenvironment during colorectal cancer (CRC), as different gut-derived bacteria can induce tumour growth. However, the crosstalk between the gut microbiome and the host in relation to tumour cell metabolism remains largely unexplored. Here we show that formate, a metabolite produced by the CRC-associated bacterium Fusobacterium nucleatum, promotes CRC development. We describe molecular signatures linking CRC phenotypes with Fusobacterium abundance. Cocultures of F. nucleatum with patient-derived CRC cells display protumorigenic effects, along with a metabolic shift towards increased formate secretion and cancer glutamine metabolism. We further show that microbiome-derived formate drives CRC tumour invasion by triggering AhR signalling, while increasing cancer stemness. Finally, F. nucleatum or formate treatment in mice leads to increased tumour incidence or size, and Th17 cell expansion, which can favour proinflammatory profiles. Moving beyond observational studies, we identify formate as a gut-derived oncometabolite that is relevant for CRC progression.
机译:不同的肠道细菌有促进结直肠癌(CRC)进展。识别甲酸作为oncometabolite派生从梭菌属nucleatum,促进儿童权利公约具备干细胞通过增加癌症形成。微生物是一个关键球员免疫调节和protumorigenic微环境在结直肠癌(CRC),不同gut-derived细菌所引起肿瘤生长。肠道微生物和宿主和肿瘤的关系细胞代谢基本上仍是无人涉足。我们表明,甲酸,产生的代谢物CRC-associated细菌梭菌属nucleatum,促进儿童权利公约的发展。连接CRC表型和分子签名梭菌属。nucleatum patient-derived CRC细胞显示protumorigenic效果,以及代谢转向甲酸分泌和增加癌症谷氨酰胺代谢。甲酸microbiome-derived驱动器CRC肿瘤入侵通过触发信号、气道高反应性增加癌症具备干细胞。老鼠或甲酸治疗导致增加肿瘤发病率或大小,Th17细胞扩张,有利于促炎配置文件。识别甲酸作为gut-derived oncometabolite这是与CRC进展相关。

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