Caerulein-induced acute pancreatitis inhibits protein synthesis through effects on eIF2B and eIF4F

Author:

Sans Maria Dolors,DiMagno Matthew J.,D'Alecy Louis G.,Williams John A.

Abstract

Acute pancreatitis (AP) has been shown in some studies to inhibit total protein synthesis in the pancreas, whereas in other studies, protein synthesis was not affected. Previous in vitro work has shown that high concentrations of cholecystokinin both inhibit protein synthesis and inhibit the activity of the guanine nucleotide exchange factor eukaryotic initiation factor (eIF)2B by increasing the phosphorylation of eIF2α. We therefore evaluated in C57BL/6 mice the effects of caerulein-induced AP on pancreatic protein synthesis, eIF2B activity and other protein translation regulatory mechanisms. Repetitive hourly injections of caerulein were administered at 50 μg/kg ip. Pancreatic protein synthesis was reduced 10 min after the initial caerulein administration and was further inhibited after three and five hourly injections. Caerulein inhibited the two major regulatory points of translation initiation: the activity of the guanine nucleotide exchange factor eIF2B (with an increase of eIF2α phosphorylation) and the formation of the eIF4F complex due, in part, to degradation of eIF4G. This inhibition was not accounted for by changes in the upstream stimulatory pathway, because caerulein activated Akt as well as phosphorylating the downstream effectors of mTOR, 4E-BP1, and ribosomal protein S6. Caerulein also decreased the phosphorylation of the eukaryotic elongation factor 2, implying that this translation factor was not inhibited in AP. Thus the inhibition of pancreatic protein synthesis in this model of AP most likely results from the inhibition of translation initiation as a result of increased eIF2α phosphorylation, reduction of eIF2B activity, and the inhibition of eIF4F complex formation.

Publisher

American Physiological Society

Subject

Physiology (medical),Gastroenterology,Hepatology,Physiology

Reference69 articles.

1. Anderson P and Kedersha N. Stressful initiations. J Cell Sci 115: 3227-3234, 2002.

2. Energy sources for protein synthesis and enzymatic secretion in rat pancreas in vitro

3. Caspase 8-mediated cleavage of plectin precedes F-actin breakdown in acinar cells during pancreatitis

4. Bianchi BR, Miller TR, Witte DG, and Lin CW. Novel CCK analogues and bombesin: a detailed analysis between phosphoinositide breakdown and high-dose inhibition of pancreatic enzyme secretion in three rodent species. J Pharmacol Exp Ther 268: 996-1002, 1994.

5. Pancreatic Synthetic Rates: A New Test of Pancreatic Function

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