首页> 美国卫生研究院文献>Journal of Diabetes Investigation >Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation but induces mild glucose intolerance
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Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation but induces mild glucose intolerance

机译:在生理敲入小鼠模型中野生型和突变型S20G hIAPP的表达不能诱导胰岛淀粉样蛋白的形成但会引起轻度的葡萄糖耐受不良

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摘要

>Aims/Introduction:  Human islet polypeptide S20G mutation (hIAPPS20G) is associated with earlier onset type 2 diabetes and increased amyloidogenicity and cytotoxicity in vitro vs wild‐type hIAPP (hIAPPWT), suggesting that amyloidogenesis may be pathogenic for type 2 diabetes. We compared the contributions of hIAPPS20G and hIAPPWT toward intra islet amyloid formation and development of type 2 diabetes in a unique physiologic knock‐in mouse model.>Materials and Methods:  We replaced the mouse IAPP gene (M allele) with hIAPPWT (W allele) and hIAPPS20G (G allele) via homologous recombination and backbred transgenic mice against C57Bl/6 strain 5 generations to minimize genetic variation. Mice (3 month old) were maintained on control (CD) or high fat diet (HFD) for 15 months and studied at 3 month intervals by oral glucose tolerance testing (OGTT) and pancreas histology to assess glucose homeostastis, amyloidogeneisis, islet mass, β cell replication, and apoptosis.>Results:  IAPP blood levels were indistinguishable in all mice. WW and GW mice maintained on both diets lacked intraislet amyloid at all ages. On both diets relative to MM controls WW and GW mice exhibit glucose intolerance (P < 0.008) with no differences in insulin secretion. However, GW mice secreted significantly more insulin (P < 0.03 that WW mice on both diets throughout the study. By 12 months on the high fat diet all mice increased their β cell mass about 3‐fold and were indistinguishable.>Conclusions:  Physiologic expression of hIAPPWT and hIAPPS20G in C57Bl/6 mice produces mild glucose intolerance with inappropriately normal insulin secretion that is independent of intraislet amyloid formation. >(J Diabetes Invest, doi: 10.1111/j.2040‐1124.2011.00166.x, 2011)
机译:>目标/简介:人胰岛多肽S20G突变(hIAPP S20G )与较早发作的2型糖尿病相关,并且与野生型hIAPP(hIAPP < sup> WT ),表明淀粉样蛋白生成可能是2型糖尿病的致病菌。我们在独特的生理敲入小鼠模型中比较了hIAPP S20G 和hIAPP WT 对胰岛内淀粉样蛋白形成和2型糖尿病发展的贡献。>材料和方法:我们通过同源重组和反向杂交转基因,将小鼠IAPP基因(M等位基因)替换为hIAPP WT (W等位基因)和hIAPP S20G (G等位基因)对C57Bl / 6品系的小鼠进行5代遗传以最小化遗传变异。将3个月大的小鼠维持在对照(CD)或高脂饮食(HFD)上15个月,并每隔3个月进行一次口服葡萄糖耐量测试(OGTT)和胰腺组织学研究,以评估葡萄糖稳态,淀粉样变性,胰岛质量, β细胞复制和凋亡。>结果:在所有小鼠中IAPP血液水平均无法区分。维持两种饮食的WW和GW小鼠在各个年龄段都缺乏胰岛内淀粉样蛋白。在两种饮食中,相对于MM对照,WW和GW小鼠均表现出葡萄糖耐受不良(P <0.008),胰岛素分泌无差异。然而,在整个研究期间,GW小鼠在两种饮食中的分泌胰岛素均显着高于WW小鼠(P <0.03)。在高脂饮食下12个月,所有小鼠的β细胞量增加了约3倍,并且难以区分。>结论: hIAPP WT 和hIAPP S20G 在C57Bl / 6小鼠中的生理表达产生轻度的葡萄糖耐量,胰岛素分泌异常正常,这与胰岛内淀粉样蛋白的形成无关。 >(《糖尿病投资杂志》,doi:10.1111 / j.2040-1124.2011.00166.x,2011年)

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