Ackerman Kate G, Wang Jianlong, Luo Liqing, Fujiwara Yuko, Orkin Stuart H, Beier David R
Division of Genetics, Brigham and Women's Hospital, Harvard Medical School New Research Building 458, 77 Avenue Louis Pasteur, Boston, MA 02115, USA.
Am J Respir Cell Mol Biol. 2007 Apr;36(4):391-7. doi: 10.1165/rcmb.2006-0211RC. Epub 2006 Dec 1.
Mutations of Fog2 in mice result in a phenotype that includes pulmonary lobar defects. To determine whether formation of the accessory lobe bronchus is mediated by a Gata family cofactor, we evaluated embryonic lungs from mice carrying missense mutations that cause loss of FOG-GATA protein interaction. Lungs from embryos carrying a missense mutation in Gata6 were structurally normal, while lungs from embryos carrying mutations of either Gata4 or of both Gata4 and Gata6 had a structural phenotype that matched the Fog2 mutant phenotype. Expression analysis showed that Gata4 and Fog2 are expressed in the ventral and medial pulmonary mesenchyme during secondary budding. Although Gata4 has not previously been suspected as playing a role in lung development, we have found that a Fog2-Gata4 interaction is critical for the development of normal pulmonary lobar structure, and this phenotype is not influenced by the additional loss of Gata6 interaction. Fog2 and Gata4 in the early pulmonary mesenchyme participate in patterning the secondary bronchus of the accessory lobe.
小鼠中Fog2的突变会导致包括肺叶缺陷在内的表型。为了确定副叶支气管的形成是否由Gata家族辅因子介导,我们评估了携带错义突变导致FOG-GATA蛋白相互作用丧失的小鼠的胚胎肺。携带Gata6错义突变的胚胎的肺结构正常,而携带Gata4或Gata4和Gata6两者突变的胚胎的肺具有与Fog2突变体表型相匹配的结构表型。表达分析表明,在次级出芽过程中,Gata4和Fog2在腹侧和内侧肺间充质中表达。尽管以前没有怀疑Gata4在肺发育中起作用,但我们发现Fog2-Gata4相互作用对于正常肺叶结构的发育至关重要,并且这种表型不受Gata6相互作用额外丧失的影响。早期肺间充质中的Fog2和Gata4参与副叶次级支气管的模式形成。