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Published on: February 22, 2017
Fusobacterium nucleatum Secretes Outer Membrane Vesicles and Promotes Intestinal Inflammation
Melinda A Engevik1,2, Heather A Danhof3, Wenly Ruan4
1Department of Pathology and Immunology, Baylor College of Medicine, Houston, Texas, USA melinda.engevik@bcm.edu.
Abstract:
Multiple studies have implicated microbes in the development of inflammation, but the mechanisms remain unknown. Bacteria in the genus Fusobacterium have been identified in the intestinal mucosa of patients with digestive diseases; thus, we hypothesized that Fusobacterium nucleatum promotes intestinal inflammation. The addition of >50 kDa F. nucleatum conditioned media, which contain outer membrane vesicles (OMVs), to colonic epithelial cells stimulated secretion of the proinflammatory cytokines interleukin-8 (IL-8) and tumor necrosis factor (TNF). In addition, purified F. nucleatum OMVs, but not compounds <50 kDa, stimulated IL-8 and TNF production; which was decreased by pharmacological inhibition of Toll-like receptor 4 (TLR4). These effects were linked to downstream effectors p-ERK, p-CREB, and NF-κB. F. nucleatum >50-kDa compounds also stimulated TNF secretion, p-ERK, p-CREB, and NF-κB activation in human colonoid monolayers. In mice harboring a human microbiota, pretreatment with antibiotics and a single oral gavage of F. nucleatum resulted in inflammation. Compared to mice receiving vehicle control, mice treated with F. nucleatum showed disruption of the colonic architecture, with increased immune cell infiltration and depleted mucus layers. Analysis of mucosal gene expression revealed increased levels of proinflammatory cytokines (KC, TNF, IL-6, IFN-γ, and MCP-1) at day 3 and day 5 in F. nucleatum-treated mice compared to controls. These proinflammatory effects were absent in mice who received F. nucleatum without pretreatment with antibiotics, suggesting that an intact microbiome is protective against F. nucleatum-mediated immune responses. These data provide evidence that F. nucleatum promotes proinflammatory signaling cascades in the context of a depleted intestinal microbiome.IMPORTANCE Several studies have identified an increased abundance of Fusobacterium in the intestinal tracts of patients with colon cancer, liver cirrhosis, primary sclerosing cholangitis, gastroesophageal reflux disease, HIV infection, and alcoholism. However, the direct mechanism(s) of action of Fusobacterium on pathophysiological within the gastrointestinal tract is unclear. These studies have identified that F. nucleatum subsp. polymorphum releases outer membrane vesicles which activate TLR4 and NF-κB to stimulate proinflammatory signals in vitro Using mice harboring a human microbiome, we demonstrate that F. nucleatum can promote inflammation, an effect which required antibiotic-mediated alterations in the gut microbiome. Collectively, these results suggest a mechanism by which F. nucleatum may contribute to intestinal inflammation.
Insights
Fusobacterium nucleatum outer membrane vesicles activate Toll-like receptor 4 (TLR4) and NF-κB signaling, promoting intestinal inflammation. This effect is dependent on antibiotic-induced alterations in the gut microbiome.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Microbes are implicated in inflammation, but mechanisms are unclear.
- Fusobacterium species are found in the gut mucosa of patients with digestive diseases.
- The role of Fusobacterium nucleatum in promoting intestinal inflammation requires elucidation.
Purpose of the Study:
- To investigate the role of Fusobacterium nucleatum in promoting intestinal inflammation.
- To identify the specific components of F. nucleatum responsible for stimulating inflammatory responses.
- To elucidate the signaling pathways involved in F. nucleatum-induced inflammation.
Main Methods:
- Exposure of colonic epithelial cells and human colonoid monolayers to F. nucleatum conditioned media and purified outer membrane vesicles (OMVs).
- Pharmacological inhibition of Toll-like receptor 4 (TLR4) and assessment of downstream signaling pathways (p-ERK, p-CREB, NF-κB).
- In vivo studies using mice with human microbiota, involving antibiotic pretreatment and F. nucleatum gavage, followed by histological and gene expression analysis.
Main Results:
- F. nucleatum OMVs (>50 kDa) stimulated interleukin-8 (IL-8) and tumor necrosis factor (TNF) production via TLR4 activation.
- F. nucleatum components activated downstream signaling molecules p-ERK, p-CREB, and NF-κB in vitro.
- In vivo, F. nucleatum induced colonic inflammation, architectural disruption, immune cell infiltration, and increased pro-inflammatory cytokine expression, contingent on antibiotic-induced microbiome alterations.
Conclusions:
- F. nucleatum, particularly its OMVs, promotes pro-inflammatory signaling cascades.
- Activation of TLR4 and NF-κB pathways by F. nucleatum contributes to intestinal inflammation.
- The pro-inflammatory effects of F. nucleatum are dependent on alterations in the gut microbiome, suggesting a context-specific role in disease pathogenesis.
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