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Regulation of hormone biosynthesis in cultured islet cells from anglerfish
Authors:G Eric Bauer  Bryan D Noe
Institution:(1) Department of Anatomy, University of Minnesota Medical School, 55455 Minneapolis, Minnesota;(2) Department of Anatomy, Emory University School of Medicine, 30322 Atlanta, Georgia;(3) The Marine Biological Laboratory, 02543 Woods Hole, Massachusetts
Abstract:Summary The effects of glucose and arginine on islet hormone biosynthesis were investigated using primary cell cultures prepared from islets of the anglerfish (Lophius americanus). After dispersion under sterile conditions, islet cells were maintained at 23° C in medium containing RPMI 1640 with Hanks' buffer, pH 7.5, modified by the adjustment of glucose (to 0.56 or 5.6 mM) and arginine (to 0.1, 1.15, or 10 mM) with the addition of 10% fetal bovine serum (dialyzed, heat inactivated) and penicillin/streptomycin. After 48 h, media were replaced by incorporation media containing 14C]isoleucine and 3H]tryptophan and incubated for an additional 8 h under otherwise identical conditions. Culture samples (cells plus media) were extracted, desalted, and gel filtered to identify and quantitate 14C]insulin, 3H]glucagon(s) plus 3H]somatostatin-28, and 3H]somatostatin-14 were In some experiments, 14C]insulin, 3H]glucagon(s), 3H]somatostatin-28, and 3H]somatostatin-14 were separated by high performance liquid chromatography. Raising the medium glucose from 0.56 (control) to 5.6 mM resulted in an augmentation in incorporation of 14C]isoleucine into insulin and an augmentation of 3H]tryptophan into glucagon(s) and somatostatin-14, but no change in incorporation of 3H]tryptophan into somatostatin-28. Raising the concentration of arginine from 0.1 to 1.15 or 10 mM resulted in a dose-dependent inhibition of labeled amino acid incorporation into all hormones except somatostatin-28. The results demonstrate the usefulness of the culture system for studying the modulation of hormone biosynthesis in anglerfish islet cells. This work was supported by Grants AM 16921 and AM 26378 from the National Institutes of Health, Bethesda, MD.
Keywords:islet hormone biosynthesis  cell culture  modulation of biosynthesis  glucose effects
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