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Department of Internal Medicine I, University of Ulm, 89070 Ulm, Germany
The
initial pathophysiological events that characterize
CCK-hyperstimulation pancreatitis include the breakdown of the actin filament system and disruption of cadherin-catenin protein complexes. Cadherins and catenins are part of adherens junctions, which may act as
anchor for the cellular actin filament system. We examined the
composition and regulation of adherens junctions during CCK-induced acinar cell damage. Freshly isolated CCK-stimulated rat pancreatic acini were examined for actin filaments and functional adherens junctions by immunocytology and laser confocal scanning microscopy or
by coprecipitation and immunoblotting for E-cadherin,
- and
-catenin, p120ctn, and phosphotyrosine. In addition to
E-cadherin and
-catenin, acinar cells express the
cadherin-regulatory protein p120ctn and the attachment
protein
-catenin. Both colocalize and coimmunoprecipitate with
E-cadherin in one complex, and all colocalize with the terminal actin
web. Supramaximal secretory CCK concentrations (10 nM) initiated tyrosine phosphorylation of p120ctn but not of
-catenin
within 2 min, preceding the breakdown of the terminal actin web by
several minutes. Under these conditions, the cadherin-catenin
association within the adherens junction complex remained intact. We
describe for the first time supramaximal CCK-dependent tyrosine
phosphorylation of the adherens junction protein p120ctn
and demonstrate the presence of an intact adherens junction protein complex in acinar cells. p120ctn may participate in the
actin filament breakdown during experimental conditions mimicking pancreatitis.
cadherin; catenin; pancreatitis; tyrosine phosphorylation
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