ETEC heat-labile toxin promotes β-catenin stabilization and transcriptional reprogramming to disrupt intestinal epithelial differentiation
Sheikh, A.; Setu, B.; Joardar, N.; Martin, J. C.; Rosa, B. A.; Mitreva, M.; Fleckenstein, J. M.
Show abstract
Enterotoxigenic Escherichia coli (ETEC), defined by their production of heat-labile (LT) and heat-stable (ST) enterotoxins, are a common cause of acute diarrheal illness in children from low- and middle-income countries, and are also linked to long-term sequelae such as malnutrition, and growth impairment. While the mechanisms underlying toxin-mediated acute diarrhea are known, the molecular events involved in ETEC related sequelae remain unclear. Here, we demonstrate that the ETEC heat-labile toxin (LT) profoundly remodels intestinal epithelial composition and function through modulation of WNT/{beta}-catenin signaling. Using human ileal enteroids, we demonstrate that LT stabilizes {beta}-catenin independently of WNT ligands, promotes its nuclear accumulation, and enhances TCF/LEF-driven transcription. Single-cell transcriptomic analyses reveal that LT increases intestinal proliferation by enhancing cell cycle activity across all epithelial lineages, thus disrupting epithelial composition by expanding proliferative progenitor populations at the expense of absorptive enterocytes. Simultaneously, LT impairs epithelial maturation and suppresses transcriptional programs required for nutrient absorption and differentiation. Together, these findings identify LT as a potent driver of intestinal epithelial reprogramming, providing mechanistic insight into how ETEC infection may drive long-term consequences beyond acute diarrhea and may inform strategies to prevent major sequelae, including malnutrition, that affect millions of children worldwide.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Lgr5+ telocytes are a signaling hub at the intestinal villus tip 97%
- Postnatal intestinal epithelial maturation by LSD1 controls the small intestinal immune cell composition independently from the microbiota 96%
- Multiomic analysis reveals cellular and epigenetic plasticity in intestinal pouches of ulcerative colitis patients 96%
Similar papers in this journal
Similar papers in this journal
- Enteroendocrine cells protect the stem cell niche by regulating crypt metabolism in response to nutrients 97%
- An epigenetic basis for sustained inflammatory epithelial progenitor cell states in Crohn's disease 96%
- A proximal-to-distal survey of healthy adult human small intestine and colon epithelium by single-cell transcriptomics 96%
Similar papers in this journal
- An iPSC-derived small intestine-on-chip with self-organizing epithelial, mesenchymal and neural cells 96%
- Disruptions in cell fate decisions and transformed enteroendocrine cells drive intestinal tumorigenesis in Drosophila. 96%
- Immune signaling mediates stromal changes to support epithelial reprogramming in Celiac duodenum 95%
Similar papers in this journal
- Microbial stimulation of oxytocin release from the intestinal epithelium via secretin signaling 97%
- Gut microbiome shifts in adolescents after sleeve gastrectomy with increased oral-associated taxa and pro-inflammatory potential 94%
- Fatty acids produced by the gut microbiota dampen host inflammatory responses by modulating intestinal SUMOylation 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.