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抗菌物质的过度产生通过抑制定殖维持肠道炎症。

Antimicrobial overproduction sustains intestinal inflammation by inhibiting colonization.

作者信息

Jang Kyung Ku, Heaney Thomas, London Mariya, Ding Yi, Yeung Frank, Ercelen Defne, Chen Ying-Han, Axelrad Jordan, Gurunathan Sakteesh, Marijke Keestra-Gounder A, Griffin Matthew E, Hang Howard C, Cadwell Ken

出版信息

bioRxiv. 2023 Feb 1:2023.01.29.526128. doi: 10.1101/2023.01.29.526128.

Abstract

Loss of antimicrobial proteins such as REG3 family members compromises the integrity of the intestinal barrier. Here, we demonstrate that overproduction of REG3 proteins can also be detrimental by reducing a protective species in the microbiota. Patients with inflammatory bowel disease (IBD) experiencing flares displayed heightened levels of secreted REG3 proteins that mediated depletion of ( ) from the gut microbiota. inoculation of mice ameliorated intestinal inflammation through activation of the innate immune receptor NOD2, which was associated with the bacterial DL-endopeptidase SagA. Microbiota sensing by NOD2 in myeloid cells mediated IL-1β secretion and increased the proportion of IL-22-producing CD4 T helper cells and innate lymphoid cells. Finally, was unable to protect mice carrying a gene variant commonly found in IBD patients. Our findings demonstrate that inflammation self-perpetuates by causing aberrant antimicrobial activity that disrupts symbiotic relationships with gut microbes.

摘要

抗菌蛋白(如REG3家族成员)的缺失会损害肠道屏障的完整性。在此,我们证明REG3蛋白的过量产生也可能有害,因为它会减少微生物群中的一种保护性物种。炎症性肠病(IBD)发作的患者分泌的REG3蛋白水平升高,该蛋白介导肠道微生物群中( )的耗竭。给小鼠接种( )可通过激活先天免疫受体NOD2改善肠道炎症,这与细菌DL-内肽酶SagA有关。髓系细胞中的NOD2对微生物群的感知介导了IL-1β的分泌,并增加了产生IL-22的CD4 T辅助细胞和先天淋巴细胞的比例。最后,( )无法保护携带IBD患者中常见的( )基因变体的小鼠。我们的研究结果表明,炎症通过引起异常的抗菌活性而自我持续,这种活性会破坏与肠道微生物的共生关系。

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Innate and adaptive immunity in inflammatory bowel disease.炎症性肠病中的先天免疫和适应性免疫。
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