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首页> 外文期刊>Molecular medicine reports >Generation of transgenic fibroblasts expressing pancreas-specific and doxycycline-inducible ICER Iγ for the establishment of a porcine model of human diabetes mellitus
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Generation of transgenic fibroblasts expressing pancreas-specific and doxycycline-inducible ICER Iγ for the establishment of a porcine model of human diabetes mellitus

机译:表达胰腺特异性和强力霉素诱导的ICERIγ的转基因成纤维细胞的生成,用于建立人糖尿病的猪模型

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摘要

Inducible cyclic AMP (cAMP) early repressor (ICER) Iγ acts as an endogenous inhibitor and disrupts the transcriptional regulation of cAMP response element binding protein (CREBP) responsive genes. Since the overexpression of ICER Iγ induces severe diabetes in a transgenic mouse model, with characteristics similar to human diabetes mellitus, an ICER Iγ construct containing an adjustable pancreas tissue specific promoter was utilized in the present study. Using the human insulin promoter region, a doxycycline (dox)-inducible ICER Iγ expression system was established using the tetracycline (tet)-controlled transactivator (tTA) with a TA response element (TRE) promoter. A unitary tet-on system that combined a tet-on activator cassette was also developed and was controlled by the human insulin promoter with a responder cassette containing genes encoding ICER Iγ regulated by the TRE promoter. To determine whether dox-enhanced ICER Iγ expression affected insulin production, the unitary tet-on ICER Iγ vector was introduced into a mouse pancreatic β-cell line and then the cells were treated with 0.1-1 mg/ml dox. The results revealed a robust increase in ICER Iγ expression and decreased insulin production. Therefore, this in vitro system may be useful for studying human diabetes mellitus and pre-diabetes using tissue-specific promoters and a dox-inducible transgene. In addition, porcine transgenic fibroblasts containing dox-inducible ICER Iγ were generated. These fibroblasts may serve as a cell source for somatic cell nuclear transfer to generate a porcine model of human diabetes mellitus.
机译:诱导型环状AMP(cAMP)早期阻遏物(ICER)Iγ充当内源性抑制剂,破坏cAMP响应元件结合蛋白(CREBP)响应基因的转录调控。由于ICERIγ的过表达在转基因小鼠模型中诱导了严重的糖尿病,其特征与人的糖尿病相似,因此在本研究中使用了包含可调节胰腺组织特异性启动子的ICERIγ构建体。使用人胰岛素启动子区域,使用具有TA响应元件(TRE)启动子的四环素(tet)控制的反式激活子(tTA)建立了强力霉素(dox)诱导的ICERIγ表达系统。还开发了结合了tet-on活化剂盒的整体tet-on系统,并由人胰岛素启动子与包含编码受TRE启动子调节的ICERIγ的基因的应答盒控制。为了确定增强dox的ICERIγ表达是否影响胰岛素的产生,将一体式tet-on ICERIγ载体导入小鼠胰腺β细胞系,然后用0.1-1 mg / ml dox处理细胞。结果显示ICERIγ表达强劲增加,胰岛素产生减少。因此,该体外系统对于使用组织特异性启动子和可诱导dox的转基因研究人糖尿病和糖尿病前期可能有用。另外,产生了含有dox诱导的ICERIγ的猪转基因成纤维细胞。这些成纤维细胞可以用作体细胞核转移以产生人糖尿病猪模型的细胞来源。

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