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作为野生型胰腺β细胞模型的小鼠β HC9细胞中的葡萄糖代谢与胰岛素释放

Glucose metabolism and insulin release in mouse beta HC9 cells, as model for wild-type pancreatic beta-cells.

作者信息

Liang Y, Bai G, Doliba N, Buettger C, Wang L, Berner D K, Matschinsky F M

机构信息

Diabetes Research Center, University of Pennsylvania School of Medicine, Philadelphia 19104, USA.

出版信息

Am J Physiol. 1996 May;270(5 Pt 1):E846-57. doi: 10.1152/ajpendo.1996.270.5.E846.

DOI:10.1152/ajpendo.1996.270.5.E846
PMID:8967474
Abstract

Glucose metabolism and its relationship with glucose-induced insulin release were studied in beta HC9 and beta TC3 cells to identify and characterize key factors controlling the intermediary metabolism of glucose and glucose-induced insulin release. The beta HC9 cell line, derived from pancreatic islets with beta-cell hyperplasia, is characterized by a normal concentration-dependency curve for glucose-stimulated insulin release, whereas the beta TC3 cell line, derived from pancreatic beta-cell tumors, shows a marked leftward shift of this curve. Maximum velocity and the Michaelis-Menten constant of glucose uptake in beta HC9 and beta TC3 cells were similar, even though GLUT-2 expression in these two cell lines differed. In both cell lines, the kinetic characteristics of glucose usage, glucose oxidation, and glucose-induced oxygen consumption were similar to those of glucose phosphorylation, indicating that the kinetics of glucose metabolism from the glucose phosphorylation step in the cytosol to the mitochondrial process of oxidative phosphorylation are determined by the glucose-phosphorylating enzyme, that is, by glucokinase in beta HC9 cells and by hexokinase in beta TC3 cells. Thus beta HC9 cells provide an opportunity for the quantitative analysis of glucose metabolism, the associated generation of coupling factors, and other essential beta-cell functions involved in glucose sensing and insulin secretion.

摘要

在βHC9和βTC3细胞中研究了葡萄糖代谢及其与葡萄糖诱导的胰岛素释放之间的关系,以识别和表征控制葡萄糖中间代谢和葡萄糖诱导的胰岛素释放的关键因素。βHC9细胞系源自胰岛β细胞增生,其特点是葡萄糖刺激的胰岛素释放具有正常的浓度依赖性曲线,而源自胰腺β细胞瘤的βTC3细胞系则显示该曲线明显左移。尽管这两种细胞系中GLUT-2的表达不同,但βHC9和βTC3细胞中葡萄糖摄取的最大速度和米氏常数相似。在这两种细胞系中,葡萄糖利用、葡萄糖氧化和葡萄糖诱导的氧消耗的动力学特征与葡萄糖磷酸化相似,这表明从细胞质中的葡萄糖磷酸化步骤到线粒体氧化磷酸化过程的葡萄糖代谢动力学是由葡萄糖磷酸化酶决定的,即在βHC9细胞中由葡萄糖激酶决定,在βTC3细胞中由己糖激酶决定。因此,βHC9细胞为葡萄糖代谢、相关偶联因子的产生以及参与葡萄糖传感和胰岛素分泌的其他重要β细胞功能的定量分析提供了机会。

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