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首页> 外文期刊>Molecular Endocrinology >Molecular Genetic Regulation of Slc30a8/ZnT8 Reveals a Positive Association With Glucose Tolerance
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Molecular Genetic Regulation of Slc30a8/ZnT8 Reveals a Positive Association With Glucose Tolerance

机译:Slc30a8 / ZnT8的分子遗传调控揭示了与葡萄糖耐量的正相关。

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Zinc transporter 8 (ZnT8), encoded by SLC30A8, is chiefly expressed within pancreatic islet cells, where it mediates zinc (Zn2+) uptake into secretory granules. Although a common nonsynonymous polymorphism (R325W), which lowers activity, is associated with increased type 2 diabetes (T2D) risk, rare inactivating mutations in SLC30A8 have been reported to protect against T2D. Here, we generate and characterize new mouse models to explore the impact on glucose homeostasis of graded changes in ZnT8 activity in the β-cell. Firstly, Slc30a8 was deleted highly selectively in these cells using the novel deleter strain, Ins1Cre. The resultant Ins1CreZnT8KO mice displayed significant (P .05) impairments in glucose tolerance at 10 weeks of age vs littermate controls, and glucose-induced increases in circulating insulin were inhibited in vivo. Although insulin release from Ins1CreZnT8KO islets was normal, Zn2+ release was severely impaired. Conversely, transgenic ZnT8Tg mice, overexpressing the transporter inducibly in the adult β-cell using an insulin promoter-dependent Tet-On system, showed significant (P .01) improvements in glucose tolerance compared with control animals. Glucose-induced insulin secretion from ZnT8Tg islets was severely impaired, whereas Zn2+ release was significantly enhanced. Our findings demonstrate that glucose homeostasis in the mouse improves as β-cell ZnT8 activity increases, and remarkably, these changes track Zn2+ rather than insulin release in vitro. Activation of ZnT8 in β-cells might therefore provide the basis of a novel approach to treating T2D.
机译: SLC30A8 编码的锌转运蛋白8(ZnT8)主要在胰腺胰岛细胞中表达,并介导锌(Zn 2 + )摄取到分泌颗粒中。尽管常见的降低活性的非同义多态性(R325W)与2型糖尿病(T2D)的风险增加有关,但据报道 SLC30A8 中罕见的失活突变可预防T2D。在这里,我们生成并表征新的小鼠模型,以探索β细胞中ZnT8活性分级变化对葡萄糖稳态的影响。首先,使用新型的缺失菌株Ins1Cre在这些细胞中高度选择性地缺失了 Slc30a8 。与同窝对照相比,Ins1CreZnT8KO小鼠在10周龄时对葡萄糖耐量表现出显着( P <.05)损害,并且葡萄糖诱导的体内循环胰岛素增加受到抑制。尽管从Ins1CreZnT8KO胰岛释放的胰岛素是正常的,但Zn 2 + 的释放却受到严重损害。相反,使用胰岛素启动子依赖性Tet-On系统在成年β细胞中诱导型过表达转运蛋白的转基因ZnT8Tg小鼠与对照组相比,葡萄糖耐量显着提高( P <.01) 。葡萄糖诱导的ZnT8Tg胰岛胰岛素分泌受到严重损害,而Zn 2 + 的释放显着增强。我们的发现表明,随着β细胞ZnT8活性的增加,小鼠体内的葡萄糖稳态得以改善,并且值得注意的是,这些变化追踪的是Zn 2 + 而不是胰岛素的体外释放。因此,β-细胞中ZnT8的活化可能为治疗T2D的新方法提供基础。

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