4.7 Article

Intercrypt sentinel macrophages tune antibacterial NF-κB responses in gut epithelial cells via TNF

期刊

JOURNAL OF EXPERIMENTAL MEDICINE
卷 218, 期 11, 页码 -

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ROCKEFELLER UNIV PRESS
DOI: 10.1084/jem.20210862

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资金

  1. ETH Zurich [ETH-39 14-2]
  2. Swiss National Science Foundation [SNF 179490, 310030_53074, 310030B_173338/1, 310030_192567]
  3. European Research Council [323040]
  4. Swedish Research Council [2012-262, 2015-00635, 2018-02223]
  5. Swedish Foundation for Strategic Research [ICA16-0031]
  6. Swedish Foundation for Strategic Research (SSF) [ICA16-0031] Funding Source: Swedish Foundation for Strategic Research (SSF)
  7. Swedish Research Council [2018-02223, 2015-00635] Funding Source: Swedish Research Council
  8. Swiss National Science Foundation (SNF) [310030_192567, 310030B_173338] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

Intestinal epithelial cell (IEC) NF-kappa B signaling is regulated by macrophages through TNF secretion, maintaining mucosal homeostasis and responding to microbial threats in a tunable manner. Macrophages serve as important first responders to Gram-negative microbes breaching the epithelial barrier.
Intestinal epithelial cell (IEC) NF-kappa B signaling regulates the balance between mucosal homeostasis and inflammation. It is not fully understood which signals tune this balance and how bacterial exposure elicits the process. Pure LPS induces epithelial NF-kappa B activation in vivo. However, we found that in mice, IECs do not respond directly to LPS. Instead, tissue-resident lamina propria intercrypt macrophages sense LPS via TLR4 and rapidly secrete TNF to elicit epithelial NF-kappa B signaling in their immediate neighborhood. This response pattern is relevant also during oral enteropathogen infection. The macrophage-TNF-IEC axis avoids responses to luminal microbiota LPS but enables crypt- or tissue-scale epithelial NF-kappa B responses in proportion to the microbial threat. Thereby, intercrypt macrophages fulfill important sentinel functions as first responders to Gram-negative microbes breaching the epithelial barrier. The tunability of this crypt response allows the induction of defense mechanisms at an appropriate scale according to the localization and intensity of microbial triggers.

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