Zhang Yuzhen, Goss Ashley M, Cohen Ethan David, Kadzik Rachel, Lepore John J, Muthukumaraswamy Karthika, Yang Jifu, DeMayo Francesco J, Whitsett Jeffrey A, Parmacek Michael S, Morrisey Edward E
Department of Medicine, University of Pennsylvania, 956 BRB II/III, 421 Curie Boulevard, Philadelphia, Pennsylvania 19104, USA.
Nat Genet. 2008 Jul;40(7):862-70. doi: 10.1038/ng.157. Epub 2008 Jun 8.
Epithelial organs, including the lung, are known to possess regenerative abilities through activation of endogenous stem cell populations, but the molecular pathways regulating stem cell expansion and regeneration are not well understood. Here we show that Gata6 regulates the temporal appearance and number of bronchioalveolar stem cells (BASCs) in the lung, its absence in Gata6-null lung epithelium leading to the precocious appearance of BASCs and concurrent loss in epithelial differentiation. This expansion of BASCs was the result of a pronounced increase in canonical Wnt signaling in lung epithelium upon loss of Gata6. Expression of the noncanonical Wnt receptor Fzd2 was downregulated in Gata6 mutants and increased Fzd2 or decreased beta-catenin expression rescued, in part, the lung epithelial defects in Gata6 mutants. During lung epithelial regeneration, canonical Wnt signaling was activated in the niche containing BASCs and forced activation of Wnt signaling led to a large increase in BASC numbers. Moreover, Gata6 was required for proper lung epithelial regeneration, and postnatal loss of Gata6 led to increased BASC expansion and decreased differentiation. Together, these data demonstrate that Gata6-regulated Wnt signaling controls the balance between progenitor expansion and epithelial differentiation required for both lung development and regeneration.
包括肺在内的上皮器官,已知可通过激活内源性干细胞群体来具备再生能力,但调节干细胞扩增和再生的分子途径尚未完全了解。在这里,我们表明Gata6调节肺中支气管肺泡干细胞(BASC)的出现时间和数量,Gata6基因缺失的肺上皮中BASC的过早出现以及上皮分化的同时丧失。BASC的这种扩增是Gata6缺失后肺上皮中经典Wnt信号明显增加的结果。非经典Wnt受体Fzd2的表达在Gata6突变体中下调,而Fzd2表达增加或β-连环蛋白表达降低部分挽救了Gata6突变体中的肺上皮缺陷。在肺上皮再生过程中,经典Wnt信号在含有BASC的生态位中被激活,Wnt信号的强制激活导致BASC数量大幅增加。此外,Gata6是肺上皮正常再生所必需的,出生后Gata6的缺失导致BASC扩增增加和分化减少。总之,这些数据表明Gata6调节的Wnt信号控制着肺发育和再生所需的祖细胞扩增与上皮分化之间的平衡。