Diem P, Walseth T F, Zhang H J, Robertson R P
Department of Medicine, University of Minnesota, Minneapolis 55455.
Endocrinology. 1990 Oct;127(4):1609-12. doi: 10.1210/endo-127-4-1609.
HIT cells have been widely used to study synthesis and secretion of insulin. It has been assumed that this cell line secretes no other islet hormones. To ascertain whether HIT cells synthesize, secrete, and degrade glucagon, we examined cell extracts for this peptide and compared secretion and degradation of glucagon and insulin during stimulation of the cells by arginine. Glucagon levels in acid extracts of HIT cells were found to be 0.72 +/- 0.15 pmol/mg protein. Both glucagon and insulin were maximally stimulated in a glucagon/insulin molar ratio of 0.029 by arginine concentrations of 25-50 nM, and the concentration of arginine that provided half-maximum responses for both hormones was approximately 3 mM. Diminution of arginine-induced glucagon secretion was caused by somatostatin, a physiological inhibitor of pancreatic islet alpha-cell function. HPLC was used to authenticate the glucagon levels stimulated by arginine for 60 min and measured by RIA. Thirty-six percent of immunoreactive glucagon was found in the fractions representing authentic glucagon, whereas the remaining 64% eluted earlier. Experiments examining the fate of radiolabeled glucagon exposed to HIT cells revealed time-dependent degradation of the radioisotope to earlier eluting forms, which accounted for approximately 50% of the radioactivity by 60 min and was complete by 18 h, indicating that the early peak detected by RIA represented a metabolite of glucagon. Radioisotopic insulin was degraded more slowly with an apparent half-life of approximately 36 h. We conclude that HIT cells are not only able to synthesize, secrete, and degrade insulin, but also much smaller amounts of glucagon.
HIT细胞已被广泛用于研究胰岛素的合成与分泌。一直以来人们认为该细胞系不分泌其他胰岛激素。为确定HIT细胞是否合成、分泌和降解胰高血糖素,我们检测了细胞提取物中的这种肽,并比较了精氨酸刺激细胞过程中胰高血糖素和胰岛素的分泌及降解情况。发现HIT细胞酸提取物中的胰高血糖素水平为0.72±0.15 pmol/mg蛋白质。精氨酸浓度为25 - 50 nM时,胰高血糖素和胰岛素均在胰高血糖素/胰岛素摩尔比为0.029时受到最大刺激,且为两种激素提供半数最大反应的精氨酸浓度约为3 mM。生长抑素(胰岛α细胞功能的生理性抑制剂)可导致精氨酸诱导的胰高血糖素分泌减少。采用高效液相色谱法(HPLC)鉴定精氨酸刺激60分钟后并通过放射免疫分析法(RIA)测量的胰高血糖素水平。在代表真实胰高血糖素的馏分中发现36%的免疫反应性胰高血糖素,而其余64%洗脱较早。检测暴露于HIT细胞的放射性标记胰高血糖素的命运的实验表明,放射性同位素随时间降解为洗脱较早的形式,到60分钟时约占放射性的50%,18小时时完全降解,这表明RIA检测到的早期峰值代表胰高血糖素的一种代谢产物。放射性同位素标记的胰岛素降解较慢,表观半衰期约为36小时。我们得出结论,HIT细胞不仅能够合成、分泌和降解胰岛素,还能合成、分泌和降解少量的胰高血糖素。