Hagedorn Research Institute, Department of Developmental Biology, Niels Steensens Vej 6, DK-2820, Denmark.
Dis Model Mech. 2012 Nov;5(6):956-66. doi: 10.1242/dmm.009696. Epub 2012 Aug 10.
Extracellular signals in development, physiology, homeostasis and disease often act by regulating transcription. Herein we describe a general method and specific resources for determining where and when such signaling occurs in live animals and for systematically comparing the timing and extent of different signals in different cellular contexts. We used recombinase-mediated cassette exchange (RMCE) to test the effect of successively deleting conserved genomic regions of the ubiquitously active Rosa26 promoter and substituting the deleted regions for regulatory sequences that respond to diverse extracellular signals. We thereby created an allelic series of embryonic stem cells and mice, each containing a signal-responsive sentinel with different fluorescent reporters that respond with sensitivity and specificity to retinoic acids, bone morphogenic proteins, activin A, Wnts or Notch, and that can be adapted to any pathway that acts via DNA elements.
细胞外信号在发育、生理、稳态和疾病中常常通过调节转录来发挥作用。本文中,我们描述了一种通用方法和具体资源,用于确定在活体动物中信号发生的位置和时间,并系统比较不同细胞环境中不同信号的时间和程度。我们使用重组酶介导的盒交换(RMCE)来测试连续删除广泛表达的 Rosa26 启动子保守基因组区域以及用响应不同细胞外信号的调控序列替代删除区域对其的影响。由此,我们创建了一系列胚胎干细胞和小鼠的等位基因,每个都包含一个信号响应的哨兵,带有不同的荧光报告基因,这些报告基因对视黄酸、骨形态发生蛋白、激活素 A、Wnt 或 Notch 具有敏感性和特异性,并且可以适应任何通过 DNA 元件起作用的途径。