TY - JOUR
T1 - Contrasting expression of canonical wnt signaling reporters TOPGAL, BATGAL and Axin2 LacZ during murine lung development and repair
AU - Al Alam, Denise
AU - Green, Melissa
AU - Tabatabai Irani, Reza
AU - Parsa, Sara
AU - Danopoulos, Soula
AU - Sala, Frederic G.
AU - Branch, Jonathan
AU - El Agha, Elie
AU - Tiozzo, Caterina
AU - Voswinckel, Robert
AU - Jesudason, Edwin C.
AU - Warburton, David
AU - Bellusci, Saverio
PY - 2011
Y1 - 2011
N2 - 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.
AB - 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.
UR - https://www.scopus.com/pages/publications/79961217056
U2 - 10.1371/journal.pone.0023139
DO - 10.1371/journal.pone.0023139
M3 - Article
C2 - 21858009
AN - SCOPUS:79961217056
SN - 1932-6203
VL - 6
JO - PLoS ONE
JF - PLoS ONE
IS - 8
M1 - e23139
ER -