p38 mitogen-activated protein kinase inhibits calcium-dependent chloride secretion in T84 colonic epithelial cells

Stephen J Keely1, Kim E Barrett

  • 1Department of Medicine, University of California, San Diego, California 92103, USA. skeely@ucsd.edu

Insights

Calcium-dependent chloride secretion in intestinal cells is regulated by p38 MAPK. Inhibiting p38 MAPK enhances this secretion, revealing a distinct pathway from ERK MAPK.

Area of Science:

  • Cellular Physiology
  • Molecular Biology
  • Gastrointestinal Research

Background:

  • Intestinal epithelial cell chloride secretion is crucial for fluid balance.
  • Previous studies identified epidermal growth factor receptor (EGFR) and ERK MAPK in regulating this process.
  • The role of p38 MAPK in calcium-dependent chloride secretion remained unclear.

Purpose of the Study:

  • To investigate the involvement of p38 MAPK in calcium-dependent chloride secretion.
  • To elucidate the signaling pathway regulating p38 MAPK activation in intestinal epithelial cells.

Main Methods:

  • Western blot analysis of T(84) colonic epithelial cells.
  • Measurement of short-circuit current (I(sc)) using Ussing chamber techniques.
  • Pharmacological inhibition of p38 MAPK, ERK MAPK, EGFR, and Src family kinases.
  • Manipulation of intracellular calcium levels using thapsigargin and BAPTA-AM.

Main Results:

  • Carbachol (CCh) stimulated p38 MAPK phosphorylation and activation in T(84) cells.
  • Inhibition of p38 MAPK with SB-203580 potentiated and prolonged CCh-induced chloride secretion.
  • p38 MAPK activation was dependent on intracellular calcium, Src family kinases, and EGFR.
  • Simultaneous inhibition of p38 and ERK MAPK resulted in significantly greater potentiation of secretion.

Conclusions:

  • Calcium-dependent agonists activate p38 MAPK in T(84) cells via a pathway involving intracellular calcium, Src kinases, and EGFR.
  • p38 MAPK activation represents a distinct yet complementary antisecretory signaling pathway to ERK MAPK.
  • p38 MAPK plays a significant role in modulating intestinal chloride secretion.

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