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Sodium Taurocholate Induced Severe Acute Pancreatitis in C57BL/6 Mice
Published on: June 28, 2021
Increased expression of Smad6 deteriorates murine acute experimental pancreatitis in two models
H Nakamura1, M Tashiro, H Asaumi
1Third Department of Internal Medicine, University of Occupational and Environmental Health, Japan, School of Medicine, 1-1 Iseigaoka, Yahatanishi-ku Kitakyushu 807-8555, Japan. hayaton@med.uoeh-u.ac.jp
Background:
Smad6 is implicated in the inhibition of bone morphogenetic protein signalling. However, the function of Smad6 in the pancreas remains obscure.
Methods:
To elucidate the unknown function of Smad6, we developed transgenic mice selectively expressing Smad6 in pancreatic acinar cells using a plasmid construct coding rat elastase 1 enhancer/promoter.
Results:
Smad6 transgenic mice had no specific distinguishing phenotype such as body weight, pancreatic wet weight and concentrations of pancreatic protein. However, Smad6 transgenic mice reacted to hyperstimulation by caerulein injection or a diet containing 0.5% ethionine. Maximal amylase release stimulated by CCK-8 was significantly decreased in Smad6 transgenic mice acini, and trypsin activities in transgenic mice acini were significantly increased after stimulation of CCK-8. There was no difference in effect of CCK-8 stimulation on the subsequent increase in intracellular free Ca2+ concentration ([Ca2+](i)) between wild-type and transgenic mice acini. These findings suggest that reduced pancreatic enzyme secretion was caused by the disorder of its downstream signal transduction pathways in acinar cells. The amino acid sequence at the N-terminus of Smad6 was similar to that of synaptosome-associated protein (SNAP) 25 interacting protein, which plays an important role in regulating exocytosis of pancreatic enzymes in acinar cells. Pancreatic SNAP25 protein levels in transgenic mice were decreased after caerulein-induced pancreatitis.
Conclusions:
These results suggest that elevated expression of Smad6 inhibits normal function of SNAP25-interacting protein and SNAP25, reduces amylase secretion in acinar cells, and increases the susceptibility of acinar cells to the onset of pancreatitis.
Insights
Smad6 protein in pancreatic acinar cells impairs amylase secretion and increases pancreatitis susceptibility by disrupting SNAP25 function. This study reveals Smad6
Area of Science:
- Molecular Biology
- Gastroenterology
- Cell Biology
Background:
- Smad6 protein is known to inhibit bone morphogenetic protein signaling.
- The specific role of Smad6 within the pancreas has not been previously defined.
Purpose of the Study:
- To investigate the function of Smad6 in pancreatic acinar cells.
- To elucidate the molecular mechanisms underlying Smad6's role in pancreatic physiology and disease.
Main Methods:
- Development of transgenic mice with selective Smad6 expression in pancreatic acinar cells.
- Analysis of pancreatic function, enzyme secretion, and protein levels following Smad6 overexpression and stimulation.
Main Results:
- Smad6 overexpression did not alter baseline pancreatic parameters but sensitized mice to pancreatitis induction.
- Maximal amylase release was significantly reduced, while trypsin activity increased in Smad6 transgenic mice.
- Pancreatic SNAP25 protein levels were decreased in Smad6 transgenic mice after pancreatitis induction, suggesting a disruption in exocytosis regulation.
Conclusions:
- Elevated Smad6 expression in pancreatic acinar cells inhibits normal SNAP25-interacting protein and SNAP25 function.
- This inhibition leads to reduced amylase secretion and increased susceptibility to pancreatitis.
- Smad6 plays a critical role in regulating pancreatic enzyme secretion and acinar cell response to injury.
Related Concept Videos
Acute Pancreatitis I: Introduction
Acute Pancreatitis II: Pathophysiology
Chronic Pancreatitis I: Introduction
Chronic Pancreatitis II: Pathophysiology

