LCN2 regulates the gut microbiota and metabolic profile in mice infected with Mycobacterium bovis.

IF 5 2区 生物学 Q1 MICROBIOLOGY mSystems Pub Date : 2024-08-20 Epub Date: 2024-07-25 DOI:10.1128/msystems.00501-24
Quntao Huang, Junhong Xing, Guoli Li, Mengting Liu, Mengtian Gao, Jingwen Wang, Fang Tang, Jianluan Ren, Chengzhu Zhao, Xinru Wang, Xinyu Zhou, Haodong Luo, Youli Yu, Dexin Zeng, Jianjun Dai, Feng Xue
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Abstract

Infection with Mycobacterium bovis precipitates a spectrum of pathologies in bovines, notably necrotic pneumonia, mastitis, and arthritis, impinging upon the health and nutritional assimilation of these animals. A pivotal factor, lipocalin 2 (Lcn2), is responsive to microbial invasion, inflammatory processes, and tissue damage, the extent of which Lcn2 modulates the gut environment, however, remains unclear in response to M. bovis-induced alterations. To explore the role of Lcn2 in shaping the gut milieu of mice during a 5-week period post-M. bovis infection, Lcn2 knockout Lcn2-/- mice were scrutinized for changes in the gut microbiota and metabolomic profiles. Results showed that Lcn2-/- mice infected with M. bovis exhibited notable shifts in the operational taxonomic units (OTUs) of gut microbiota, alongside significant disparities in α and β diversity. Concomitantly, a marked increase was observed during the 5-week period in the abundance of Akkermansia, Oscillospira, and Bacteroides, coupled with a substantial decrease in Ruminococcus within the microbiome of Lcn2 knockout mice. Notably, Akkermansia muciniphila was significantly enriched in the gut flora of Lcn2-/- mice. Furthermore, the absence of Lcn2 significantly altered the gut metabolomic landscape, evidenced by elevated levels of metabolites such as taurodeoxycholic acid, 10-undecenoic acid, azelaic acid, and dodecanedioic acid in Lcn2-/- mice. Our findings demonstrated that the lack of Lcn2 in the context of M. bovis infection profoundly affected the regulation of gut microbiota and metabolomic components, culminating in a transformed gut environment. Our results revealed that Lcn2 may regulate gut microbiota and metabolome components, changing the intestinal environment, thereby affecting the infection status of M. bovis.

Importance: Our study addresses the critical knowledge gap regarding the specific influence of lipocalin 2 (LCN2) in the context of Mycobacterium bovis infection, particularly focusing on its role in the gut environment. Utilizing LCN2 knockout (Lcn2-/-) mice, we meticulously assessed changes in the gut microbiota and metabolic components following M. bovis infection. Our findings reveal alterations in the gut microbial community, emphasizing the potentially crucial role of LCN2 in maintaining stability. Furthermore, we observed significant shifts in specific microbial communities, including the enrichment of Akkermansia muciniphila, known for its positive impact on intestinal health and immune regulation. The implications of our study extend beyond understanding the dynamics of the gut microbiome, offering insights into the potential therapeutic strategies for gut-related health conditions and microbial dysbiosis.

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LCN2 可调节感染了牛分枝杆菌的小鼠的肠道微生物群和代谢状况。
牛分枝杆菌感染会引起牛的一系列病症,特别是坏死性肺炎、乳腺炎和关节炎,影响这些动物的健康和营养吸收。一种关键因子脂钙蛋白 2(Lcn2)能对微生物入侵、炎症过程和组织损伤做出反应,但 Lcn2 在多大程度上调节肠道环境以应对牛海绵状芽孢杆菌引起的变化仍不清楚。为了探索 Lcn2 在牛海绵状芽孢杆菌感染后 5 周内塑造小鼠肠道环境中的作用,研究人员仔细观察了 Lcn2 基因敲除的 Lcn2/- 小鼠肠道微生物群和代谢组特征的变化。结果显示,感染了牛海绵状芽孢杆菌的 Lcn2-/-小鼠肠道微生物群的操作分类单元(OTUs)发生了明显变化,同时α和β多样性也出现了显著差异。同时,在 Lcn2 基因敲除小鼠的微生物群中,观察到 Akkermansia、Oscillospira 和 Bacteroides 的丰度在 5 周内显著增加,而 Ruminococcus 则大幅减少。值得注意的是,在 Lcn2-/-小鼠的肠道菌群中,Akkermansia muciniphila 明显富集。此外,Lcn2-/-小鼠体内的代谢物如牛去氧胆酸、10-十一碳烯酸、壬二酸和十二碳二酸水平的升高证明了Lcn2-/-小鼠体内Lcn2的缺失明显改变了肠道代谢组学景观。我们的研究结果表明,在牛海绵状芽孢杆菌感染的情况下,缺乏 Lcn2 会严重影响肠道微生物群和代谢组成分的调节,最终导致肠道环境的改变。我们的研究结果表明,Lcn2可能会调控肠道微生物群和代谢组成分,改变肠道环境,从而影响牛海绵状芽孢杆菌的感染状态:我们的研究填补了脂联素 2(LCN2)在牛分枝杆菌感染中的特定影响方面的知识空白,尤其是其在肠道环境中的作用。利用 LCN2 基因敲除(Lcn2-/-)小鼠,我们仔细评估了牛分枝杆菌感染后肠道微生物群和代谢成分的变化。我们的发现揭示了肠道微生物群落的变化,强调了 LCN2 在维持稳定性方面的潜在关键作用。此外,我们还观察到特定微生物群落发生了重大变化,包括因对肠道健康和免疫调节有积极影响而闻名的 Akkermansia muciniphila 的富集。我们这项研究的意义不仅在于了解肠道微生物群的动态,还为肠道相关健康状况和微生物菌群失调的潜在治疗策略提供了见解。
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来源期刊
mSystems
mSystems Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
10.50
自引率
3.10%
发文量
308
审稿时长
13 weeks
期刊介绍: mSystems™ will publish preeminent work that stems from applying technologies for high-throughput analyses to achieve insights into the metabolic and regulatory systems at the scale of both the single cell and microbial communities. The scope of mSystems™ encompasses all important biological and biochemical findings drawn from analyses of large data sets, as well as new computational approaches for deriving these insights. mSystems™ will welcome submissions from researchers who focus on the microbiome, genomics, metagenomics, transcriptomics, metabolomics, proteomics, glycomics, bioinformatics, and computational microbiology. mSystems™ will provide streamlined decisions, while carrying on ASM''s tradition of rigorous peer review.
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