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2型糖尿病自发性糖尿病GK大鼠模型胰岛中腺苷酸环化酶(AC)-III基因启动子的突变、AC-III mRNA的过表达以及cAMP生成的增强。

Mutations in the promoter of adenylyl cyclase (AC)-III gene, overexpression of AC-III mRNA, and enhanced cAMP generation in islets from the spontaneously diabetic GK rat model of type 2 diabetes.

作者信息

Abdel-Halim S M, Guenifi A, He B, Yang B, Mustafa M, Höjeberg B, Hillert J, Bakhiet M, Efendić S

机构信息

Department of Molecular Medicine, Karolinska Hospital, Stockholm, Sweden.

出版信息

Diabetes. 1998 Mar;47(3):498-504. doi: 10.2337/diabetes.47.3.498.

Abstract

Glucose-induced insulin release is decreased in the spontaneously diabetic GK rat, a nonobese rodent model of type 2 diabetes. Forskolin restores the impaired insulin release in both the isolated perfused pancreas and isolated islets from these rats (Abdel-Halim et al., Diabetes 45:934-940, 1996). We demonstrate here that the insulinotropic effect of forskolin in the GK rat is due to increased generation of cAMP and that it is associated with overexpression of adenylyl cyclase (AC)-III mRNA and gene mutations. The AC-III mRNA overexpression was demonstrated by in situ hybridization using oligonucleotide probes binding to different regions of the rat AC-III mRNA. It was associated with the presence of two point mutations identified at positions -28 bp (A --> G) and -358 bp (A --> C) of the promoter region of the AC-III gene and was demonstrable in both GK rat islets and peripheral blood cells. Transfection of COS cells with a luciferase reporter gene system revealed up to 25-fold increased promoter activity of GK AC-III promoter when compared with normal rat promoter (P < 0.0001). In conclusion, forskolin restores the impaired insulin release in islets of the GK rat through enhanced cAMP generation. This is linked to overexpression of AC-III mRNA in GK islets due to two functional point mutations in the promoter region of the AC-III gene.

摘要

在自发性糖尿病GK大鼠(一种非肥胖型2型糖尿病啮齿动物模型)中,葡萄糖诱导的胰岛素释放减少。福斯可林可恢复这些大鼠分离的灌注胰腺和分离胰岛中受损的胰岛素释放(Abdel-Halim等人,《糖尿病》45:934 - 940,1996)。我们在此证明,福斯可林在GK大鼠中的促胰岛素作用是由于cAMP生成增加,并且它与腺苷酸环化酶(AC)-III mRNA的过表达和基因突变有关。使用与大鼠AC-III mRNA不同区域结合的寡核苷酸探针进行原位杂交,证实了AC-III mRNA的过表达。它与在AC-III基因启动子区域-28 bp(A→G)和-358 bp(A→C)位置鉴定出的两个点突变的存在有关,并且在GK大鼠胰岛和外周血细胞中均可检测到。用荧光素酶报告基因系统转染COS细胞显示,与正常大鼠启动子相比,GK AC-III启动子的启动子活性增加了25倍(P < 0.0001)。总之,福斯可林通过增强cAMP生成来恢复GK大鼠胰岛中受损的胰岛素释放。这与AC-III基因启动子区域的两个功能性点突变导致GK胰岛中AC-III mRNA的过表达有关。

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