Nishijo Koichi, Hosoyama Tohru, Bjornson Christopher R R, Schaffer Beverly S, Prajapati Suresh I, Bahadur Ali N, Hansen Mark S, Blandford Mary C, McCleish Amanda T, Rubin Brian P, Epstein Jonathan A, Rando Thomas A, Capecchi Mario R, Keller Charles
Greehey Children's Cancer Research Institute and Department of Cellular and Structural Biology, University of Texas Health Science Center, San Antonio, Texas, USA.
FASEB J. 2009 Aug;23(8):2681-90. doi: 10.1096/fj.08-128116. Epub 2009 Mar 30.
Bioluminescent reporter genes are sensitive in situ tools for following disease progression in preclinical models, albeit they are subject to scattering and absorption in deep tissues. We have generated a bicistronic Cre/LoxP reporter mouse line that pairs the expression of firefly luciferase with quantifiable expression of a human placental alkaline phosphatase that is secreted into the serum (SeAP). With the use of this dual-modality bioreporter with a novel, inducible Pax7-CreER line for tracking muscle satellite cells, we demonstrate the longitudinal kinetics of muscle stem cell turnover, accounting for a doubling of the signal from satellite cell and progeny every 3.93 wk in the transition from adolescence to early adulthood. We also show that this dual-modality bioreporter can be incorporated in preclinical cancer models, whereby SeAP activity is reflective of tumor burden. Thus, this dual bioreporter permits both spatial localization and accurate quantification of biological processes in vivo even when the tissue of interest is deep within the animal.
生物发光报告基因是用于跟踪临床前模型中疾病进展的灵敏原位工具,尽管它们在深部组织中会受到散射和吸收的影响。我们构建了一种双顺反子Cre/LoxP报告小鼠品系,该品系将萤火虫荧光素酶的表达与分泌到血清中的人胎盘碱性磷酸酶(SeAP)的可量化表达配对。通过使用这种具有新型诱导性Pax7-CreER品系的双模态生物报告基因来跟踪肌肉卫星细胞,我们证明了肌肉干细胞更新的纵向动力学,即在从青春期到成年早期的过渡过程中,卫星细胞及其后代的信号每3.93周增加一倍。我们还表明,这种双模态生物报告基因可用于临床前癌症模型,其中SeAP活性反映肿瘤负荷。因此,即使感兴趣的组织位于动物体内深处,这种双生物报告基因也能在体内对生物过程进行空间定位和准确量化。