D'Alessio D A, Verchere C B, Kahn S E, Hoagland V, Baskin D G, Palmiter R D, Ensinck J W
Department of Medicine, University of Washington, Seattle 98195.
Diabetes. 1994 Dec;43(12):1457-61. doi: 10.2337/diab.43.12.1457.
Islet amyloid polypeptide (IAPP) is a secretory product of the pancreatic beta-cell, which is the primary constituent of the islet amyloid that develops in type II diabetes. To study the role the inherent amyloidogenicity of human IAPP (hIAPP) plays in the formation of islet amyloid deposits and to investigate a possible hormonal role for IAPP, transgenic mice expressing hIAPP were developed. The transgene was composed of a fragment of an hIAPP cDNA linked to the rat insulin II promoter. One line of transgenic mice expressed the transgene and synthesized hIAPP in their pancreatic islets. IAPP-like immunoreactivity in pancreatic extracts and plasma were two- to threefold greater in the transgenic mice compared with nontransgenic control mice. Although plasma concentrations of immunoreactive insulin (IRI) and glucose were equal in transgenic and control mice, the pancreatic content of IRI was nearly twofold greater in the transgenic animals, and proinsulin mRNA was significantly elevated, suggesting increased rates of insulin biosynthesis. Pancreatic samples obtained from transgenic mice up to 19 months of age had no evidence of islet amyloid. These results indicate that an increased level of synthesis of the amyloidogenic hIAPP is not sufficient to cause islet amyloid deposition. However, the increased synthesis and storage of insulin in the islets of the transgenic mice are consistent with either a direct regulatory effect of IAPP on the beta-cell or indirect stimulation of insulin production through IAPP-induced insulin resistance.
胰岛淀粉样多肽(IAPP)是胰腺β细胞的一种分泌产物,是II型糖尿病中胰岛淀粉样变的主要成分。为了研究人IAPP(hIAPP)固有的淀粉样变性在胰岛淀粉样沉积物形成中所起的作用,并探究IAPP可能的激素作用,研究人员培育了表达hIAPP的转基因小鼠。转基因由一段与大鼠胰岛素II启动子相连的hIAPP cDNA片段组成。其中一组转基因小鼠表达该转基因并在其胰岛中合成hIAPP。与非转基因对照小鼠相比,转基因小鼠胰腺提取物和血浆中的IAPP样免疫反应性高出两到三倍。尽管转基因小鼠和对照小鼠血浆中的免疫反应性胰岛素(IRI)和葡萄糖浓度相等,但转基因动物胰腺中的IRI含量几乎高出一倍,胰岛素原mRNA显著升高,表明胰岛素生物合成速率增加。对19个月龄以下的转基因小鼠获取胰腺样本,未发现胰岛淀粉样变的证据。这些结果表明,淀粉样变性hIAPP合成水平的升高不足以导致胰岛淀粉样沉积。然而,转基因小鼠胰岛中胰岛素合成和储存的增加,要么与IAPP对β细胞的直接调节作用一致,要么与通过IAPP诱导的胰岛素抵抗间接刺激胰岛素产生一致。