Chymotrypsin activity signals to intestinal epithelium by protease‐activated receptor‐dependent mechanisms

Author:

Guignard Simon1,Saifeddine Mahmoud23,Mihara Koichiro23,Motahhary Majid23,Savignac Magali4,Guiraud Laura1,Sagnat David1,Sebbag Mireille1,Khou Sokchea1,Rolland Corinne1,Edir Anissa1,Bournet Barbara5,Buscail Louis5,Buscail Etienne16,Alric Laurent7,Camare Caroline89,Ambli Mouna1,Vergnolle Nathalie12ORCID,Hollenberg Morley D.23ORCID,Deraison Céline1ORCID,Bonnart Chrystelle1ORCID

Affiliation:

1. IRSD, University of Toulouse, INSERM, INRAE, ENVT, Université Toulouse III—Paul Sabatier (UPS) Toulouse France

2. Department of Physiology and Pharmacology University of Calgary Cumming School of Medicine Calgary Alberta Canada

3. Department of Medicine University of Calgary Cumming School of Medicine Calgary Alberta Canada

4. Toulouse Institute for Infectious and Inflammatory Diseases (Infinity) INSERM UMR1291—Centre National de la Recherche Scientifique UMR5051, Université Toulouse III—Paul Sabatier (UPS) Toulouse France

5. Department of Gastroenterology Toulouse University Hospital Toulouse France

6. Department of Digestive Surgery Toulouse University Hospital Toulouse France

7. Department of Internal Medicine and Digestive Diseases Rangueil, Toulouse III University Hospital, University of Toulouse Toulouse France

8. Department of Clinical Biochemistry Toulouse University Hospital Toulouse France

9. University of Toulouse, UMR1297, INSERM/Université Toulouse III—Paul Sabatier (UPS) Toulouse France

Abstract

AbstractBackground and PurposeChymotrypsin is a pancreatic protease secreted into the lumen of the small intestine to digest food proteins. We hypothesized that chymotrypsin activity may be found close to epithelial cells and that chymotrypsin signals to them via protease‐activated receptors (PARs). We deciphered molecular pharmacological mechanisms and gene expression regulation for chymotrypsin signalling in intestinal epithelial cells.Experimental ApproachThe presence and activity of chymotrypsin were evaluated by Western blot and enzymatic activity tests in the luminal and mucosal compartments of murine and human gut samples. The ability of chymotrypsin to cleave the extracellular domain of PAR1 or PAR2 was assessed using cell lines expressing N‐terminally tagged receptors. The cleavage site of chymotrypsin on PAR1 and PAR2 was determined by HPLC–MS analysis. The chymotrypsin signalling mechanism was investigated in CMT93 intestinal epithelial cells by calcium mobilization assays and Western blot analyses of (ERK1/2) phosphorylation. The transcriptional consequences of chymotrypsin signalling were analysed on colonic organoids.Key ResultsWe found that chymotrypsin was present and active in the vicinity of the colonic epithelium. Molecular pharmacological studies have shown that chymotrypsin cleaves both PAR1 and PAR2 receptors. Chymotrypsin activated calcium and ERK1/2 signalling pathways through PAR2, and this pathway promoted interleukin‐10 (IL‐10) up‐regulation in colonic organoids. In contrast, chymotrypsin disarmed PAR1, preventing further activation by its canonical agonist, thrombin.Conclusion and ImplicationsOur results highlight the ability of chymotrypsin to signal to intestinal epithelial cells via PARs, which may have important physiological consequences in gut homeostasis.

Funder

Fondation pour la Recherche Médicale

Agence Nationale de la Recherche

Publisher

Wiley

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