The intestine and liver are thought to metabolize dietary nutrients and regulate host nutrient homeostasis. Here, we find that the gut microbiota also reshapes the host amino acid (aa) landscape via efficiently metabolizing intestinal aa. To identify the responsible microbes/genes, we developed a metabolomics-based assay to screen 104 commensals and identified candidates that efficiently utilize aa. Using genetics, we identified multiple responsible metabolic genes in phylogenetically diverse microbes. By colonizing germ-free mice with the wild-type strain and their isogenic mutant deficient in individual aa-metabolizing genes, we found that these genes regulate the availability of gut and circulatory aa. Notably, microbiota genes for branched-chain amino acids (BCAAs) and tryptophan metabolism indirectly affect host glucose homeostasis via peripheral serotonin. Collectively, at single-gene level, this work characterizes a microbiota-encoded metabolic activity that affects host nutrient homeostasis and provides a roadmap to interrogate microbiota-dependent activity to improve human health.
Microbiota metabolism of intestinal amino acids impacts host nutrient homeostasis and physiology.
肠道菌群对肠道氨基酸的代谢影响宿主的营养稳态和生理机能
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作者:Li Ting-Ting, Chen Xi, Huo Da, Arifuzzaman Mohammad, Qiao Shanshan, Jin Wen-Bing, Shi Huiqing, Li Xin V, Iliev Iliyan D, Artis David, Guo Chun-Jun
| 期刊: | Cell Host & Microbe | 影响因子: | 18.700 |
| 时间: | 2024 | 起止号: | 2024 May 8; 32(5):661-675 |
| doi: | 10.1016/j.chom.2024.04.004 | 研究方向: | 代谢 |
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