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Experimental control of pancreatic development and maintenance

机译:胰腺发育和维持的实验控制

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摘要

To investigate the role of the HOX-like homeoprotein PDX1 in the formation and maintenance of the pancreas, we have genetically engineered mice so that the only source of PDX1 is a transgene that can be controlled by the application of tetracycline or its analogue doxycycline. In these mice the coding region for the tetracycline-regulated transactivator (tTAoff) has replaced the coding region of the endogenous Pdx1 gene to ensure correct temporal and spatial expression of the regulatable transactivator. In the absence of doxycycline, tTAoff activates the transcription of a bicistronic transgene encoding PDX1 and an enhanced green fluorescent protein reporter, which acts as a visual marker of transgene expression in living cells. Expression of the transgene-encoded PDX1 rescues the Pdx1-null phenotype; the pancreata of these mice develop and function normally. The rescue is conditional; doxycycline-mediated repression of the transgenic Pdx1 throughout gestation recapitulates the Pdx1 null phenotype. Moreover, application of doxycycline at mid-pancreogenesis blocks further development. Adult animals of the rescue genotype that were treated with doxycycline for 3 weeks shut off Pdx1 expression, decreased insulin production, and lost the ability to maintain glucose homeostasis. These results demonstrate the feasibility of controlling the formation of an organ during embryogenesis in utero and the maintenance of the mature organ through the experimental manipulation of a key developmental regulator.
机译:为了研究HOX样同源蛋白PDX1在胰腺形成和维持中的作用,我们对小鼠进行了基因工程改造,以使PDX1的唯一来源是可以通过应用四环素或其类似物强力霉素来控制的转基因。在这些小鼠中,四环素调节的反式激活因子(tTAoff)的编码区已经取代了内源性Pdx1基因的编码区,以确保可调节的反式激活因子的正确时空表达。在没有强力霉素的情况下,tTAoff激活了编码PDX1的双顺反子转基因和增强的绿色荧光蛋白报告基因的转录,该报告基因充当活细胞中转基因表达的视觉标记。转基因编码的PDX1的表达挽救了Pdx1空表型。这些小鼠的胰腺发育正常。救援是有条件的;在整个妊娠期间,强力霉素介导的转基因Pdx1抑制可概括Pdx1无效表型。此外,强力霉素在胰腺生成中期的应用阻碍了进一步的发展。用强力霉素治疗3周的拯救基因型成年动物会关闭Pdx1表达,降低胰岛素产生,并失去维持葡萄糖稳态的能力。这些结果证明了通过子宫内关键发育调节剂的实验操作来控制子宫内胚胎发生期间控制器官形成以及维持成熟器官的可行性。

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