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Achi, S.

Publications and source records attributed to Achi, S..

2 recordsLinked to original sources

Dysregulation of γδ intraepithelial lymphocytes precedes Crohn's disease-like ileitis

Intraepithelial lymphocytes expressing the {gamma}{delta} T cell receptor ({gamma}{delta} IELs) provide immunosurveillance of the intestinal barrier. Interestingly, {gamma}{delta} IEL number is reduced in patients with active Crohns disease (CD). Here, we report an underappreciated role for {gamma}{delta} IELs in maintaining mucosal tolerance during the onset and progression of CD-like ileitis using the TNF{Delta}ARE/+ mouse model. Decreased epithelial HNF4G/BTNL expression is followed by a loss of ileal {gamma}{delta} IELs and impaired barrier surveillance prior to the histological onset of disease. A reduction of immunoregulatory CD39+ {gamma}{delta} IELs coincides with the influx of immature, peripheral CD39- {gamma}{delta} T cells into the epithelium leading to an expansion of induced IELs, while an earlier depletion of {gamma}{delta} IELs correlates with accelerated onset of ileal inflammation. Our findings identify multiple layers of {gamma}{delta} IEL dysregulation prior to ileitis development indicating that the loss of tissue-resident immunoregulatory {gamma}{delta} IELs may contribute to the initiation of ileal CD.

immunology↗

The crosstalk between microbial sensors ELMO1 and NOD2 shape intestinal immune responses

Microbial sensors play an essential role in maintaining cellular homeostasis. Our knowledge is limited on how microbial sensing helps in differential immune response and its link to inflammatory diseases. Recently, we have shown that cytosolic sensor ELMO1 (Engulfment and Cell Motility Protein-1) binds to effectors from pathogenic bacteria and controls intestinal inflammation. Here, we show that ELMO1 interacts with another sensor, NOD2 (Nucleotide-binding oligomerization domain-containing protein 2), that recognizes bacterial cell wall component muramyl dipeptide (MDP). The polymorphism of NOD2 is linked to Crohns disease (CD) pathogenesis. Interestingly, we found that overexpression of ELMO1 and mutant NOD2 (L1007fs) were not able to clear the CD-associated adherent invasive E. coli (AIEC-LF82). To understand the interplay of microbial sensing of ELMO1-NOD2 in epithelial cells and macrophages, we used enteroid-derived monolayers (EDMs) from ELMO1 and NOD2 KO mice and ELMO1 and NOD2-depleted murine macrophage cell lines. The infection of murine EDMs with AIEC-LF82 showed higher bacterial load in ELMO1-KO, NOD2 KO EDMs, and ELMO1 KO EDMs treated with NOD2 inhibitors. The murine macrophage cells showed that the downregulation of ELMO1 and NOD2 is associated with impaired bacterial clearance that is linked to reduced pro-inflammatory cytokines and reactive oxygen species. Our results indicated that the crosstalk between microbial sensors in enteric infection and inflammatory diseases impacts the fate of the bacterial load and disease pathogenesis.

microbiology↗