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

Gut
|May 15, 2008
PubMed
Abstract

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.

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