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分泌型免疫球蛋白M调节肠道微生物群稳态和代谢。

Secretory IgM regulates gut microbiota homeostasis and metabolism.

作者信息

Ding Yang, Fernández-Montero Alvaro, Mani Amir, Casadei Elisa, Miyazawa Ryuichiro, Zhou Congjin, Chaumont Lise, Posavi Marijan, Cole Stephen D, Shibasaki Yasuhiro, Takizawa Fumio, Salinas Irene, Sunyer J Oriol

机构信息

Department of Pathobiology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA, USA.

Center for Evolutionary and Theoretical Immunology (CETI), Department of Biology, University of New Mexico, Albuquerque, NM, USA.

出版信息

Nat Microbiol. 2025 May 23. doi: 10.1038/s41564-025-02013-8.

Abstract

The coating of microbiota by secretory immunoglobulins (sIgs) determines which bacteria colonize the gut and influences bacterial metabolism. Previous work has identified sIgA and sIgT as mediators of gut homeostasis. However, sIgM coats a large proportion of the gut microbiota in humans and teleost fish, thus suggesting a conserved role of sIgM in microbiota homeostasis. Here, to investigate this hypothesis, we used the teleost rainbow trout as a model system. Depletion of IgM from trout resulted in severe microbiota-dependent gut tissue damage, body weight loss, bacterial translocation and gut dysbiosis. IgM depletion led also to alterations in microbiota-derived metabolites, including short-chain fatty acids and essential amino acids. Supporting a protective role for sIgM in the gut, high mortality of IgM-depleted fish occurred in an experimental colitis model as a result of severe systemic bacteraemia and septic shock. Our findings uncover sIgM as a previously unrecognized regulator of microbiota homeostasis and metabolism.

摘要

分泌型免疫球蛋白(sIg)对微生物群的包被决定了哪些细菌能在肠道定殖,并影响细菌代谢。此前的研究已确定sIgA和sIgT是肠道稳态的介质。然而,sIgM包被了人类和硬骨鱼肠道微生物群的很大一部分,因此表明sIgM在微生物群稳态中具有保守作用。在此,为了探究这一假设,我们使用硬骨鱼虹鳟作为模型系统。虹鳟体内IgM的耗竭导致严重的微生物群依赖性肠道组织损伤、体重减轻、细菌易位和肠道生态失调。IgM耗竭还导致微生物群衍生代谢物的改变,包括短链脂肪酸和必需氨基酸。在实验性结肠炎模型中,由于严重的全身性菌血症和感染性休克,IgM耗竭的鱼出现了高死亡率,这支持了sIgM在肠道中的保护作用。我们的研究结果揭示了sIgM是微生物群稳态和代谢的一种此前未被认识的调节因子。

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