1983•DiabetesOpen access

Elevated Proinsulin Biosynthesis In Vitro from a Rat Model of Non-insulin-dependent Diabetes Mellitus

Philippe A. Halban, Susan Bonner‐Weir, Gordon C. Weir

Open full text 29 citations

Abstract

Rats were injected with streptozotocin at 2 days of age. After 10-14 wk, the injected rats showed normal body weight with only modestly elevated fed plasma glucose (controls: 118 mg/dl, diabetic rats: 209 mg/dl). No significant difference between control and diabetic rats was found for overnight fasting plasma insulin levels. The diabetic rats had a retarded rate of disposal of intravenously injected glucose, with only 13% of the incremental increase in plasma insulin seen in control rats 2 min after glucose injection. The immunoreactive insulin content of islets isolated from the diabetic rats was 14% of controls. However, these islets had 74% of the B-cell composition of controls, as estimated by quantitative morphometry. Insulin release (30 min) was lower from islets from diabetic rats than from controls, but was not lowered to the same extent as islet insulin content. Proinsulin biosynthesis was estimated by measuring the incorporation of [3H] leucine or of [3H] phenylalanine into immunoprecipitable material. Proinsulin biosynthesis was strikingly elevated in islets from diabetic rats. Although incorporation of labeled amino acids into total islet protein was also elevated for islets from diabetic rats, the elevation was less pronounced than for incorporation into immunoprecipitable material. The diabetic state of these animals is thus associated with glucose intolerance in vivo, and an increased rate of insulin turnover in isolated islets studied in vitro.

About this research paper

What this paper is about

Rats were injected with streptozotocin at 2 days of age. After 10-14 wk, the injected rats showed normal body weight with only modestly elevated fed plasma glucose (controls: 118 mg/dl, diabetic rats: 209 mg/dl). No significant difference between control and diabetic rats was found for overnight fasting plasma insulin levels. The diabetic rats had a retarded rate of disposal of intravenously injected glucose, with only 13% of the incremental increase in plasma insulin seen in control rats 2 min after glucose injection. The immunoreactive insulin content of islets isolated from the diabetic rats was 14% of controls. However, these islets had 74% of the B-cell composition of controls, as estimated by quantitative morphometry. Insulin release (30 min) was lower from islets from diabetic rats than from controls, but was not lowered to the same extent as islet insulin content. Proinsulin biosynthesis was estimated by measuring the incorporation of [3H] leucine or of [3H] phenylalanine into immunoprecipitable material. Proinsulin biosynthesis was strikingly elevated in islets from diabetic rats. Although incorporation of labeled amino acids into total islet protein was also elevated for islets from diabetic rats, the elevation was less pronounced than for incorporation into immunoprecipitable material. The diabetic state of these animals is thus associated with glucose intolerance in vivo, and an increased rate of insulin turnover in isolated islets studied in vitro.

Why it matters

OpenAlex reports 29 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Rats were injected with streptozotocin at 2 days of age. After 10-14 wk, the injected rats showed normal body weight with only modestly elevated fed plasma glucose (controls: 118 mg/dl, diabetic rats: 209 mg/dl). No significant difference between control and diabetic rats was found for overnight fasting plasma insulin levels. The diabetic rats had a retarded rate of disposal of intravenously injected glucose, with only 13% of the incremental increase in plasma insulin seen in control rats 2 min after glucose injection. The immunoreactive insulin content of islets isolated from the diabetic rats was 14% of controls. However, these islets had 74% of the B-cell composition of controls, as estimated by quantitative morphometry. Insulin release (30 min) was lower from islets from diabetic rats than from controls, but was not lowered to the same extent as islet insulin content. Proinsulin biosynthesis was estimated by measuring the incorporation of [3H] leucine or of [3H] phenylalanine into immunoprecipitable material. Proinsulin biosynthesis was strikingly elevated in islets from diabetic rats. Although incorporation of labeled amino acids into total islet protein was also elevated for islets from diabetic rats, the elevation was less pronounced than for incorporation into immunoprecipitable material. The diabetic state of these animals is thus associated with glucose intolerance in vivo, and an increased rate of insulin turnover in isolated islets studied in vitro.

Key concepts: Proinsulin, Internal medicine, Endocrinology, Insulin, Islet, Diabetes mellitus, Streptozotocin, In vivo

Related papers

Back to paper searchBrowse research topicsOriginal source
Elevated Proinsulin Biosynthesis In Vitro from a Rat Model of Non-insulin-dependent Diabetes Mellitus — Research Paper | ScholarLens