Ins1基因在Ins2敲除小鼠的β细胞系中上调。

Loïc Leroux, Béatrice Durel, Valérie Autier, Louise Deltour, Danielle Bucchini, Jacques Jami, Rajiv L Joshi
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引用次数: 9

摘要

作者从Ins2-/-小鼠中获得了一种新的β细胞系(betaIns2(-/-lacZ)),该细胞系携带在Ins2启动子控制下的lacZ报告基因。betaIns2(-/-lacZ)细胞使用抗胰岛素抗体染色呈阳性,表达编码转录因子PDX-1、葡萄糖激酶和Glut-2的β细胞特异性基因,保留胰岛素分泌的葡萄糖反应性,并表达lacZ基因。通过逆转录聚合酶链反应(RT-PCR)分析Ins1表达,与同时表达Ins1/Ins2的betaTC1细胞相比,在betaIns2(-/- lacz)细胞中,Ins1转录物显著增加,以弥补Ins2转录物的缺失。因此,除了我们之前报道的β细胞质量增加外,Ins2-/-小鼠中剩余的功能性胰岛素基因的转录上调可能有助于这些突变体表现出的β细胞适应性。我们还发现,通过测定β -半乳糖苷酶活性,通过将betaIns2(-/-lacZ)细胞与GLP-1和/或IBMX(两种已知的胰岛素基因表达刺激因子)一起培养,lacZ表达上调。因此,这些细胞代表了一种测试能够刺激Ins2启动子活性的分子的新工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ins1 gene up-regulated in a beta-cell line derived from Ins2 knockout mice.

The authors have derived a new beta-cell line (betaIns2(-/-lacZ)) from Ins2-/- mice that carry the lacZ reporter gene under control of the Ins2 promoter. betaIns2(-/-lacZ) cells stained positively using anti-insulin antibody, expressed beta-cell-specific genes encoding the transcription factor PDX-1, glucokinase, and Glut-2, retained glucose-responsiveness for insulin secretion, and expressed the lacZ gene. Analysis of Ins1 expression by reverse transcriptase-polymerase chain reaction (RT-PCR) showed that Ins1 transcripts were significantly raised to compensate for the lack of Ins2 transcripts in betaIns2(-/-lacZ) cells, as compared to those found in betaTC1 cells expressing both Ins1/Ins2. Thus, transcriptional up-regulation of the remaining functional insulin gene in Ins2-/- mice could potentially contribute to the beta-cell adaptation exhibited by these mutants, in addition to the increase in beta-cell mass that we previously reported. We have also shown that lacZ expression, as analyzed by determining beta-galactosidase activity, was up-regulated by incubating betaIns2(-/-lacZ) cells with GLP-1 and/or IBMX, 2 known stimulators of insulin gene expression. These cells thus represent a new tool for testing of molecules capable of stimulating Ins2 promoter activity.

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