Morphological and Functional Characterization of βTC-6 Cells—an Insulin-Secreting Cell Line Derived From Transgenic Mice

内科学 胰高血糖素 内分泌学 生长抑素 胰岛素 百日咳毒素 生物 刺激 激素 胰腺激素 基础(医学) 细胞培养 G蛋白 胰岛素抵抗 受体 医学 遗传学
作者
Vincent Poitout,Laurence E. Stout,Michael B. Armstrong,Timothy F. Walseth,Robert L. Sorenson,R. Paul Robertson
出处
期刊:Diabetes [American Diabetes Association]
卷期号:44 (3): 306-313 被引量:88
标识
DOI:10.2337/diab.44.3.306
摘要

Morphological analysis of hormone content and functional assessment of hormone secretion were conducted in beta TC-6 cells, an insulin-secreting cell line derived from transgenic mice expressing the large T-antigen of simian virus 40 (SV40) in pancreatic beta-cells. We observed by immunohistochemistry and confocal microscopy that beta TC-6 cells contain abundant insulin and small amounts of glucagon and somatostatin (SRIF). Glucagon usually co-localized with insulin, whereas cells containing SRIF did not contain insulin or glucagon. Static incubation and perifusion experiments demonstrated that beta TC-6 cells at passage 30-45 secrete insulin in response to glucose. In static incubations, maximal stimulation was achieved for glucose concentrations > 2.8 mmol/l glucose, and the half-maximal effect was observed at 0.5 mmol/l. Maximal stimulation was four times greater than HIT-T15 cells at passage 72-81, although HIT cells had a greater response over their basal levels. The magnitude of the insulin response to glucose in perifusion was 1,734 +/- 384 pmol.l-1. min and was 4.6-fold greater in the presence of 3-isobutyl-1-methylxanthine. Low amounts of glucagon were released in response to amino acids. Epinephrine (EPI), and to a lesser extent SRIF, inhibited phasic glucose-induced insulin secretion. A major portion of these inhibitory effects was mediated by pertussis toxin-sensitive substrates. Immunoblots detected the presence of the G-proteins Gi alpha 2, Gi alpha 3, and Go alpha 2. These results indicate that beta TC-6 cells are a glucose-responsive cell line in which insulin exocytosis is physiologically regulated by EPI and SRIF through Gi/Go-mediated mechanisms.
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