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基于宏基因组学的仔猪结肠中神经活性氨基酸微生物代谢推断及其对抗生素的反应

Metagenomics-based inference of microbial metabolism towards neuroactive amino acids and the response to antibiotics in piglet colon.

机构信息

Laboratory of Gastrointestinal Microbiology, College of Animal Science and Technology, Nanjing Agricultural University, Nanjing, China.

National Center for International Research on Animal Gut Nutrition, National Experimental Teaching Demonstration Center of Animal Science, Nanjing Agricultural University, Nanjing, China.

出版信息

Amino Acids. 2023 Oct;55(10):1333-1347. doi: 10.1007/s00726-023-03311-3. Epub 2023 Aug 15.

DOI:10.1007/s00726-023-03311-3
PMID:37581868
Abstract

Gut-derived neuroactive metabolites from amino acids perform a broad range of physiological roles in the body. However, the interaction between microbiota and epithelium in the metabolism of amino acids with neuroactive properties remains unclear in the colon of piglets. To investigate the microbial and epithelial metabolism, metagenomics and mucosal metabolomics were performed using colonic samples from 12 ileum-canulated piglets subjected to a 25-day infusion with saline or antibiotics. We categorized 23 metabolites derived from the metabolism of tryptophan, glutamate, and tyrosine, known as precursors of neuroactive metabolites. Microbial enzymes involved in the kynurenine synthesis via arylformamidase, 4-aminobutyric acid (GABA) synthesis via putrescine aminotransferase, and tyramine synthesis via tyrosine decarboxylase were identified in Clostridiales bacterium, uncultured Blautia sp., and Methanobrevibacter wolinii, respectively. Antibiotics significantly affected the microbiota involved in tryptophan-kynurenine and glutamate-GABA metabolism. An increase in the relative abundance of putrescine aminotransferase and Blautia sp. correlated positively with an increase in luminal GABA concentration. Overall, our findings provide new insights into the microbial ability to metabolize key amino acids that are precursors of neuroactive metabolites.

摘要

肠道来源的氨基酸衍生的神经活性代谢物在体内发挥广泛的生理作用。然而,仔猪结肠中微生物群和上皮细胞在具有神经活性特性的氨基酸代谢中的相互作用仍不清楚。为了研究微生物和上皮细胞的代谢,使用来自 12 只回肠插管仔猪的结肠样本进行了宏基因组学和黏膜代谢组学研究,这些仔猪接受了 25 天的盐水或抗生素输注。我们将色氨酸、谷氨酸和酪氨酸代谢产生的 23 种已知的神经活性代谢物前体分类。在梭菌、未培养的布劳特氏菌和甲烷短杆菌中鉴定出了参与犬尿氨酸合成的芳基酰胺酶、通过腐胺转氨酶合成 GABA 和通过酪氨酸脱羧酶合成酪胺的微生物酶。抗生素显著影响了色氨酸-犬尿氨酸和谷氨酸-GABA 代谢中涉及的微生物群。腐胺转氨酶和布劳特氏菌相对丰度的增加与腔内 GABA 浓度的增加呈正相关。总的来说,我们的研究结果为微生物代谢神经活性代谢物前体关键氨基酸的能力提供了新的见解。

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本文引用的文献

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Metagenomic analysis of ancient dental calculus reveals unexplored diversity of oral archaeal Methanobrevibacter.古牙垢的宏基因组分析揭示了口腔古菌甲烷短杆菌未被探索的多样性。
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GABA Production by Human Intestinal spp.: Prevalence, Regulation, and Role in Acid Stress Tolerance.人类肠道菌产生γ-氨基丁酸:发生率、调控及其在耐酸应激中的作用
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Microbial metabolism of L-tyrosine protects against allergic airway inflammation.L-酪氨酸的微生物代谢可预防过敏性气道炎症。
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The double life of serotonin metabolites: in the mood for joining neuronal and immune systems.血清素代谢物的双重生活:与神经元和免疫系统联合的情绪。
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