Authors
Avipsa Bose, Yashika Bopanna, Pallavi Shetty, Kritica Sharma, John Kandam Kulathu Mathew, Vishwas Mishra, Sanghita Bannerjee, Harini Ramani, Anna B Pulimood, Ramray Bhat, Avinash R Shenoy, Sandhya S Visweswariah
Published in
American journal of physiology. Gastrointestinal and liver physiology. Volume 331. Issue 2. Pages G125-G139. Aug 01, 2026. Epub Jun 24, 2026.
Abstract
Hyperactivating mutations in guanylyl cyclase C (GC-C) are monogenic causes of early-onset inflammatory bowel disease, familial diarrheal syndrome, and congenital secretory diarrhea. The mechanisms linking elevated cGMP levels to immune imbalance remain poorly defined. Here, using a preclinical model of a disease-associated GC-C mutation, we observe pleiotropic alterations in the small intestinal epithelium. Transcriptomic and functional analyses revealed impaired Paneth and goblet cell differentiation, compromised barrier integrity, heightened epithelial permeability, and increased proinflammatory cytokine levels. Intestinal organoids from mutant mice exhibited amplified cGMP responses to GC-C ligands and defects in secretory lineage specification, confirming cell-autonomous mechanisms. Strikingly, oral zinc administration suppressed aberrant GC-C activity, normalized cGMP levels, and restored barrier function. These findings highlight the central role of epithelial cGMP signaling in coordinating barrier integrity and immune-epithelial interactions and identify zinc as a tractable therapeutic strategy for GC-C-mediated intestinal disorders.NEW & NOTEWORTHY Activating mutations in GUCY2C, which encodes the receptor guanylyl cyclase C (GC-C), cause early-onset diarrheal disease and gastrointestinal inflammation. Knock-in mice carrying a familial diarrheal syndrome mutation exhibited impaired gut barrier function. Mutant organoids showed defective secretory lineage specification associated with reduced Wnt3 expression. Zinc administration, which lowers epithelial cGMP levels by inhibiting GC-C, reversed most pathological changes in both mice and organoids.
PMID:
42339686
Bibliographic data and abstract were imported from PubMed on 15 Sep 2026.
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