Developmental Biology and Regenerative Medicine Program, Saban Research Institute of Children's Hospital Los Angeles, Los Angeles, California, United States of America.
PLoS One. 2011;6(8):e23139. doi: 10.1371/journal.pone.0023139. Epub 2011 Aug 9.
Canonical WNT signaling plays multiple roles in lung organogenesis and repair by regulating early progenitor cell fates: investigation has been enhanced by canonical Wnt reporter mice, TOPGAL, BATGAL and Axin2(LacZ). Although widely used, it remains unclear whether these reporters convey the same information about canonical Wnt signaling. We therefore compared beta-galactosidase expression patterns in canonical Wnt signaling of these reporter mice in whole embryo versus isolated prenatal lungs. To determine if expression varied further during repair, we analyzed comparative pulmonary expression of beta-galactosidase after naphthalene injury. Our data show important differences between reporter mice. While TOPGAL and BATGAL lines demonstrate Wnt signaling well in early lung epithelium, BATGAL expression is markedly reduced in late embryonic and adult lungs. By contrast, Axin2(LacZ) expression is sustained in embryonic lung mesenchyme as well as epithelium. Three days into repair after naphthalene, BATGAL expression is induced in bronchial epithelium as well as TOPGAL expression (already strongly expressed without injury). Axin2(LacZ) expression is increased in bronchial epithelium of injured lungs. Interestingly, both TOPGAL and Axin2(LacZ) are up regulated in parabronchial smooth muscle cells during repair. Therefore the optimal choice of Wnt reporter line depends on whether up- or down-regulation of canonical Wnt signal reporting in either lung epithelium or mesenchyme is being compared.
经典 WNT 信号通路通过调节早期祖细胞命运在肺器官发生和修复中发挥多种作用:经典 Wnt 报告小鼠、TOPGAL、BATGAL 和 Axin2(LacZ) 增强了对此的研究。尽管这些报告基因被广泛使用,但仍不清楚它们是否传递了关于经典 WNT 信号的相同信息。因此,我们比较了这些报告小鼠中经典 WNT 信号的β-半乳糖苷酶表达模式,包括整个胚胎和分离的产前肺。为了确定在修复过程中是否有进一步的表达差异,我们分析了萘损伤后比较性肺β-半乳糖苷酶表达。我们的数据显示了报告基因小鼠之间的重要差异。虽然 TOPGAL 和 BATGAL 品系在早期肺上皮中表现出良好的 Wnt 信号,但 BATGAL 表达在晚期胚胎和成年肺中明显减少。相比之下,Axin2(LacZ) 在胚胎肺间质和上皮中持续表达。萘损伤后 3 天进入修复期,BATGAL 表达在支气管上皮中诱导,TOPGAL 表达也增强(无损伤时表达已很强)。Axin2(LacZ) 在受损肺的支气管上皮中表达增加。有趣的是,TOPGAL 和 Axin2(LacZ) 在修复期间都在上皮细胞和支气管平滑肌细胞中上调。因此,最佳选择 Wnt 报告基因取决于是比较肺上皮或间质中经典 WNT 信号的上调还是下调。