跨组织多组学分析显示,肠道微生物群的缺失会影响器官形态、免疫稳态、胆汁酸和脂质代谢

IF 23.7 Q1 MICROBIOLOGY
iMeta Pub Date : 2025-02-14 DOI:10.1002/imt2.272
Juan Shen, Weiming Liang, Ruizhen Zhao, Yang Chen, Yanmin Liu, Wei Cheng, Tailiang Chai, Yin Zhang, Silian Chen, Jiazhe Liu, Xueting Chen, Yusheng Deng, Zhao Zhang, Yufen Huang, Huanjie Yang, Li Pang, Qinwei Qiu, Haohao Deng, Shanshan Pan, Linying Wang, Jingjing Ye, Wen Luo, Xuanting Jiang, Xiao Huang, Wanshun Li, Elaine Lai-Han Leung, Lu Zhang, Li Huang, Zhimin Yang, Rouxi Chen, Junpu Mei, Zhen Yue, Hong Wei, Kristiansen Karsten, Lijuan Han, Xiaodong Fang
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引用次数: 0

摘要

肠道菌群影响宿主免疫和代谢,其组成和功能的变化与若干非传染性疾病有关。在这里,我们使用空间转录组学、单细胞RNA测序和靶向胆汁酸代谢组学对无菌(GF)和无特异性病原体(SPF)小鼠进行了比较,系统地评估了肠道微生物群的缺失如何影响器官形态、免疫稳态、胆汁酸和脂质代谢。通过综合分析,我们发现B细胞、髓细胞和T/自然杀伤细胞明显畸变,粘膜分区和营养摄取改变,粪便、肝脏和循环中的胆汁酸谱发生显著变化,在GF小鼠中,替代合成途径占主导地位,胆汁酸肠肝循环发生显著变化。特别是,自噬驱动的脂滴在回肠上皮和肝脏锌指和含BTB结构域蛋白(ZBTB20)-脂蛋白脂肪酶(ZBTB20-LPL)轴上的破坏是GF小鼠血浆脂质稳态的关键。我们的研究结果揭示了共生肠道细菌与宿主之间的串扰中微生物-宿主相互作用的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cross-tissue multi-omics analyses reveal the gut microbiota's absence impacts organ morphology, immune homeostasis, bile acid and lipid metabolism

Cross-tissue multi-omics analyses reveal the gut microbiota's absence impacts organ morphology, immune homeostasis, bile acid and lipid metabolism

The gut microbiota influences host immunity and metabolism, and changes in its composition and function have been implicated in several non-communicable diseases. Here, comparing germ-free (GF) and specific pathogen-free (SPF) mice using spatial transcriptomics, single-cell RNA sequencing, and targeted bile acid metabolomics across multiple organs, we systematically assessed how the gut microbiota's absence affected organ morphology, immune homeostasis, bile acid, and lipid metabolism. Through integrated analysis, we detect marked aberration in B, myeloid, and T/natural killer cells, altered mucosal zonation and nutrient uptake, and significant shifts in bile acid profiles in feces, liver, and circulation, with the alternate synthesis pathway predominant in GF mice and pronounced changes in bile acid enterohepatic circulation. Particularly, autophagy-driven lipid droplet breakdown in ileum epithelium and the liver's zinc finger and BTB domain-containing protein (ZBTB20)-Lipoprotein lipase (LPL) (ZBTB20-LPL) axis are key to plasma lipid homeostasis in GF mice. Our results unveil the complexity of microbiota–host interactions in the crosstalk between commensal gut bacteria and the host.

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